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1
Comprehensive Understanding of Closed Pores in Hard Carbon Anode for High-Energy Sodium-Ion Batteries
10.1007/s40820-025-01833-x
Siyang Gan, Yujie Huang, Ningyun Hong, Yinghao Zhang, Bo Xiong, Zhi Zheng, Zidong He, Shengrui Gao, Wentao Deng, Guoqiang Zou, Hongshuai Hou, Xiaobo Ji
Hard carbon (HC) is considered the most promising anode material for sodium-ion batteries (SIBs) due to its high cost-effectiveness and outstanding overall performance. However, the amorphous and intricate microstructure of HC poses significant challenges in elucidating the structure–performance relationship, which has...
Materials Science & Metallurgy
https://sinotechintel.com/paper/comprehensive-understanding-of-closed-pores-in-hard-carbon-anode-for-high-energy-sodium-ion-batteries
2
Radiative Cooling Materials for Extreme Environmental Applications
10.1007/s40820-025-01835-9
Jianing Xu, Wei Xie, Hexiang Han, Chengyu Xiao, Jing Li, Yifan Zhang, Shaowen Chen, Binyuan Zhao, Di Zhang, Han Zhou
Radiative cooling is a passive thermal management strategy that leverages the natural ability of materials to dissipate heat through infrared radiation. It has significant implications for energy efficiency, climate adaptation, and sustainable technology development, with applications in personal thermal management, bu...
Materials Science & Metallurgy
https://sinotechintel.com/paper/radiative-cooling-materials-for-extreme-environmental-applications
3
Artificial Intelligence-Assisted Conductive Hydrogel Dressings for Refractory Wounds Monitoring
10.1007/s40820-025-01834-w
Yumo She, He Liu, Hailiang Yuan, Yiqi Li, Xunjie Liu, Ruonan Liu, Mengyao Wang, Tingting Wang, Lina Wang, Meihan Liu, Wenyu Wan, Ye Tian, Kai Zhang
Refractory wounds cause significant harm to the health of patients and the most common treatments in clinical practice are surgical debridement and wound dressings. However, certain challenges, including surgical difficulty, lengthy recovery times, and a high recurrence rate persist. Conductive hydrogel dressings with ...
Materials Science & Metallurgy
https://sinotechintel.com/paper/artificial-intelligence-assisted-conductive-hydrogel-dressings-for-refractory-wounds-monitoring
4
Advanced Nanomedicines for Treating Refractory Inflammation-Related Diseases
10.1007/s40820-025-01829-7
Xiuxiu Wang, Xinran Song, Wei Feng, Meiqi Chang, Jishun Yang, Yu Chen
This review examines inflammation as a physiological defense mechanism against infectious agents, physical trauma, reactive oxygen species (ROS), and metabolic stress, which, under dysregulated conditions, may progress into chronic diseases. Nanomedicine, which integrates nanotechnology with medicine, suppresses inflam...
Materials Science & Metallurgy
https://sinotechintel.com/paper/advanced-nanomedicines-for-treating-refractory-inflammation-related-diseases
5
Screening Anionic Groups Within Zwitterionic Additives for Eliminating Hydrogen Evolution and Dendrites in Aqueous Zinc Ion Batteries
10.1007/s40820-025-01826-w
Biao Wang, Chaohong Guan, Qing Zhou, Yiqing Wang, Yutong Zhu, Haifeng Bian, Zhou Chen, Shuangbin Zhang, Xiao Tan, Bin Luo, Shaochun Tang, Xiangkang Meng, Cheng Zhang
Zwitterionic materials with covalently tethered cations and anions have great potential as electrolyte additives for aqueous Zn-ion batteries (AZIBs) owing to their appealing intrinsic characteristics and merits. However, the impact of cationic and anionic moieties within zwitterions on enhancing the performance of AZI...
Materials Science & Metallurgy
https://sinotechintel.com/paper/screening-anionic-groups-within-zwitterionic-additives-for-eliminating-hydrogen-evolution-and-dendrites-in-aqueous-zinc-ion-batteries
6
Ultra-Broadband and Ultra-High Electromagnetic Interference Shielding Performance of Aligned and Compact MXene Films
10.1007/s40820-025-01750-z
Weiqiang Huang, Xuebin Liu, Yunfan Wang, Jiyong Feng, Junhua Huang, Zhenxi Dai, Shaodian Yang, Songfeng Pei, Jing Zhong, Xuchun Gui
With the rapid development of electronic detective techniques, there is an urgent need for broadband (from microwave to infrared) stealth of aerospace equipment. However, achieving effective broadband stealth primarily relies on the composite of multi-layer coatings of different materials, while realizing broadband ste...
Materials Science & Metallurgy
https://sinotechintel.com/paper/ultra-broadband-and-ultra-high-electromagnetic-interference-shielding-performance-of-aligned-and-compact-mxene-films
7
Pickering Emulsion-Driven MXene/Silk Fibroin Hydrogels with Programmable Functional Networks for EMI Shielding and Solar Evaporation
10.1007/s40820-025-01818-w
Guang Yin, Jing Wu, Chengzhang Qi, Xinfeng Zhou, Zhong-Zhen Yu, Hao-Bin Zhang
Flexible and conformable nanomaterial-based functional hydrogels find promising applications in various fields. However, the controllable manipulation of functional electron/mass transport networks in hydrogels remains rather challenging to realize. We describe a general and versatile surfactant-free emulsion construct...
Materials Science & Metallurgy
https://sinotechintel.com/paper/pickering-emulsion-driven-mxenesilk-fibroin-hydrogels-with-programmable-functional-networks-for-emi-shielding-and-solar-evaporation
8
Dicyandiamide-Driven Tailoring of the n-Value Distribution and Interface Dynamics for High-Performance ACI 2D Perovskite Solar Cells
10.1007/s40820-025-01817-x
Ge Chen, Yunlong Gan, Shiheng Wang, Xueru Liu, Jing Yang, Sihui Peng, Yingjie Zhao, Pengwei Li, Asliddin Komilov, Yanlin Song, Yiqiang Zhang
Organic–inorganic hybrid perovskite solar cells achieve remarkable efficiencies (> 26%) yet face stability challenges. Quasi-2D alternating-cation-interlayer perovskites offer enhanced stability through hydrophobic spacer cations but suffer from vertical phase segregation and buried interface defects. Herein, we introd...
Materials Science & Metallurgy
https://sinotechintel.com/paper/dicyandiamide-driven-tailoring-of-the-n-value-distribution-and-interface-dynamics-for-high-performance-aci-2d-perovskite-solar-cells
9
Sensors Innovations for Smart Lithium-Based Batteries: Advancements, Opportunities, and Potential Challenges
10.1007/s40820-025-01786-1
Jamile Mohammadi Moradian, Amjad Ali, Xuehua Yan, Gang Pei, Shu Zhang, Ahmad Naveed, Khurram Shehzad, Zohreh Shahnavaz, Farooq Ahmad, Balal Yousaf
Lithium-based batteries (LiBs) are integral components in operating electric vehicles to renewable energy systems and portable electronic devices, thanks to their unparalleled energy density, minimal self-discharge rates, and favorable cycle life. However, the inherent safety risks and performance degradation of LiB ov...
Materials Science & Metallurgy
https://sinotechintel.com/paper/sensors-innovations-for-smart-lithium-based-batteries-advancements-opportunities-and-potential-challenges
10
3D-Printed Boron-Nitrogen Doped Carbon Electrodes for Sustainable Wastewater Treatment via MPECVD
10.1007/s40820-025-01827-9
Iwona Kaczmarzyk, Malgorzata SzopiΕ„ska, Patryk SokoΕ‚owski, Simona Sabbatini, Gabriel Strugala, Jacek Ryl, Gianni Barucca, Per FalΓ₯s, Robert Bogdanowicz, Mattia Pierpaoli
This study proposes a novel and sustainable method for fabricating 3D-printed carbon-based electrodes for electrochemical wastewater treatment. We prepared B,N-doped carbon electrodes with hierarchical porosity and a significantly enhanced surface area-to-volume ratio (up to 180%) compared to non-optimized analogues us...
Materials Science & Metallurgy
https://sinotechintel.com/paper/3d-printed-boron-nitrogen-doped-carbon-electrodes-for-sustainable-wastewater-treatment-via-mpecvd
11
A LiF-Pie-Structured Interphase for Silicon Anodes
10.1007/s40820-025-01832-y
Weiping Li, Shiwei Xu, Cong Zhong, Qiu Fang, Suting Weng, Yinzi Ma, Bo Wang, Yejing Li, Zhaoxiang Wang, Xuefeng Wang
Silicon (Si) is a promising anode material for rechargeable batteries due to its high theoretical capacity and abundance, but its practical application is hindered by the continuous growth of porous solid-electrolyte interphase (SEI), leading to capacity fade. Herein, a LiF-Pie structured SEI is proposed, with LiF nano...
Materials Science & Metallurgy
https://sinotechintel.com/paper/a-lif-pie-structured-interphase-for-silicon-anodes
12
Designing a Sulfur Vacancy Redox Disruptor for Photothermoelectric and Cascade-Catalytic-Driven Cuproptosis–Ferroptosis–Apoptosis Therapy
10.1007/s40820-025-01828-8
Mengshu Xu, Jingwei Liu, Lili Feng, Jiahe Hu, Wei Guo, Huiming Lin, Bin Liu, Yanlin Zhu, Shuyao Li, Elyor Berdimurodov, Avez Sharipov, Piaoping Yang
The therapeutic efficacy of cuproptosis, ferroptosis, and apoptosis is hindered by inadequate intracellular copper and iron levels, hypoxia, and elevated glutathione (GSH) expression in tumor cells. Thermoelectric technology is an emerging frontier in medical therapy that aims to achieve efficient thermal and electrica...
Materials Science & Metallurgy
https://sinotechintel.com/paper/designing-a-sulfur-vacancy-redox-disruptor-for-photothermoelectric-and-cascade-catalytic-driven-cuproptosisferroptosisapoptosis-therapy
13
Low Energy Consumption Photoelectric Memristors with Multi-Level Linear Conductance Modulation in Artificial Visual Systems Application
10.1007/s40820-025-01816-y
Zhenyu Zhou, Zixuan Zhang, Pengfei Li, Zhiyuan Guan, Yuchen Li, Xiaoxu Li, Shan Xu, Jianhui Zhao, Xiaobing Yan
Optical synapses have an ability to perceive and remember visual information, making them expected to provide more intelligent and efficient visual solutions for humans. As a new type of artificial visual sensory devices, photoelectric memristors can fully simulate synaptic performance and have great prospects in the d...
Materials Science & Metallurgy
https://sinotechintel.com/paper/low-energy-consumption-photoelectric-memristors-with-multi-level-linear-conductance-modulation-in-artificial-visual-systems-application
14
Scalable Fabrication of Methylammonium-Free Wide-Bandgap Perovskite Solar Cells by Blade Coating in Ambient Air
10.1007/s40820-025-01838-6
Jianbo Liu, Meng Zhang, Xiaoran Sun, Linhu Xiang, Xiangyu Yang, Xin Hu, Zhicheng Wang, Tian Hou, Jinzhao Qin, Yuelong Huang, Mojtaba Abdi-Jalebi, Xiaojing Hao
Scalable fabrication of efficient wide-bandgap (WBG) perovskite solar cells (PSCs) is crucial to realize the full commercial potential of tandem solar cells. However, there are challenges in fabricating efficient methylammonium-free (MA-free) WBG PSCs by blade coating, especially its phase separation and films stabilit...
Materials Science & Metallurgy
https://sinotechintel.com/paper/scalable-fabrication-of-methylammonium-free-wide-bandgap-perovskite-solar-cells-by-blade-coating-in-ambient-air
15
15 Years of Progress on Transition Metal-Based Electrocatalysts for Microbial Electrochemical Hydrogen Production: From Nanoscale Design to Macroscale Application
10.1007/s40820-025-01781-6
Seyed Masoud Parsa, Zhijie Chen, Huu Hao Ngo, Wei Wei, Xinbo Zhang, Ying Liu, Bing-Jie Ni, Wenshan Guo
Designing high-performance electrocatalysts is one of the key challenges in the development of microbial electrochemical hydrogen production. Transition metal-based (TM-based) electrocatalysts are introduced as an astonishing alternative for future catalysts by addressing several disadvantages, like the high cost and l...
Materials Science & Metallurgy
https://sinotechintel.com/paper/15-years-of-progress-on-transition-metal-based-electrocatalysts-for-microbial-electrochemical-hydrogen-production-from-nanoscale-design-to-macroscale-application
16
Designing Metal Phosphide Solid-Electrolyte Interphase for Stable Lithium Metal Batteries Through Electrified Interface Optimization and Synergistic Conversion
10.1007/s40820-025-01813-1
Jung Been Park, Changhoon Choi, Min Sang Kim, Hyeongbeom Kang, Eunji Kwon, Seungho Yu, Dong-Wan Kim
Regulating the nucleation and growth of Li metal is crucial for achieving stable high-energy-density Li metal batteries (LMBs) without dendritic Li growth, severe volume expansion, and β€œdead Li” accumulation. Herein, we present a modulation layer composed of porous SnP0.94/CoP p-n heterojunction particles (SCP), synthe...
Materials Science & Metallurgy
https://sinotechintel.com/paper/designing-metal-phosphide-solid-electrolyte-interphase-for-stable-lithium-metal-batteries-through-electrified-interface-optimization-and-synergistic-conversion
17
Strategies for Enhancing Energy-Level Matching in Perovskite Solar Cells: An Energy Flow Perspective
10.1007/s40820-025-01815-z
Xiaorong Shi, Kui Xu, Yiyue He, Zhaogang Peng, Xiangrui Meng, Fayi Wan, Yu Zhang, Qingxun Guo, Yonghua Chen
Metal halide perovskites, owing to their remarkable optoelectronic properties and broad application prospects, have emerged as a research hotspot in materials science and photovoltaics. In addressing challenges related to energy loss, photoelectric conversion efficiency, and operational stability in perovskite solar ce...
Materials Science & Metallurgy
https://sinotechintel.com/paper/strategies-for-enhancing-energy-level-matching-in-perovskite-solar-cells-an-energy-flow-perspective
18
Dual Structure Reinforces Interfacial Polarized MXene/PVDF-TrFE Piezoelectric Nanocomposite for Pressure Monitoring
10.1007/s40820-025-01839-5
Yong Ao, Long Jin, Shenglong Wang, Bolin Lan, Guo Tian, Tianpei Xu, Longchao Huang, Zihan Wang, Yue Sun, Tao Yang, Weili Deng, Fan Yang, Weiqing Yang
The emerging interfacial polarization strategy exhibits applicative potential in piezoelectric enhancement. However, there is an ongoing effort to address the inherent limitations arising from charge bridging phenomena and stochastic interface disorder that plague the improvement of piezoelectric performance. Here, we ...
Materials Science & Metallurgy
https://sinotechintel.com/paper/dual-structure-reinforces-interfacial-polarized-mxenepvdf-trfe-piezoelectric-nanocomposite-for-pressure-monitoring
19
Triple-Layer Porous Transport Layers with Ultra-High Porosity for Enhanced Oxygen Transport and Catalyst Utilization in Water Electrolysis
10.1007/s40820-025-01831-z
Seong Hyun Park, Young Je Park, Seungsoo Jang, Pilyoung Lee, Soobin Yoon, Young-June Park, Chi-Young Jung, Kang Taek Lee
The commercialization of proton exchange membrane water electrolysis (PEMWE) for green hydrogen production hinges on the development of low-cost, high-performance titanium porous transport layers (PTLs). This study introduces a triple-layer Ti-PTL with a graded porous structure and a 75% ultra-high porosity backing lay...
Materials Science & Metallurgy
https://sinotechintel.com/paper/triple-layer-porous-transport-layers-with-ultra-high-porosity-for-enhanced-oxygen-transport-and-catalyst-utilization-in-water-electrolysis
20
Face-/Edge-Shared 3D Perovskitoid Single Crystals with Suppressed Ion Migration for Stable X-Ray Detector
10.1007/s40820-025-01788-z
Zimin Zhang, Xiaoli Wang, Huayang Li, Dong Li, Yang Zhang, Nan Shen, Xue-Feng Yu, Yucheng Liu, Shengzhong Liu, Haomin Song, Yanliang Liu, Xingzhu Wang, Shi Chen
Although three-dimensional metal halide perovskites are promising candidates for direct X-ray detection, the ion migration of perovskites seriously affects the detector stability. Herein, face-/edge-shared 3D heterometallic glycinate hybrid perovskitoid Pb2CuGly2X4 (Gly = -O2C-CH2-NH2; X = Cl, Br) single crystals (SCs)...
Materials Science & Metallurgy
https://sinotechintel.com/paper/face-edge-shared-3d-perovskitoid-single-crystals-with-suppressed-ion-migration-for-stable-x-ray-detector
21
Electrochemical Solid-State Electrolyte Reactors: Configurations, Applications, and Future Prospects
10.1007/s40820-025-01824-y
Weisong Li, Yanjie Zhai, Shanhe Gong, Yingying Zhou, Qing Xia, Jie Wu, Xiao Zhang
The advancement of clean electricity is positioning electrochemical reactors at the forefront of future electrosynthesis technologies. Solid-state electrolyte (SSE) reactors emerge for their distinctive configurations and ability to produce high-purity fuels and chemicals efficiently without additional purification ste...
Materials Science & Metallurgy
https://sinotechintel.com/paper/electrochemical-solid-state-electrolyte-reactors-configurations-applications-and-future-prospects
22
Metal–Support Interaction Induced Electron Localization in Rationally Designed Metal Sites Anchored MXene Enables Boosted Electromagnetic Wave Attenuation
10.1007/s40820-025-01819-9
Xiao Wang, Gaolei Dong, Fei Pan, Cong Lin, Bin Yuan, Yang Yang, Wei Lu
The electron localization is considered as a promising approach to optimize electromagnetic waves (EMW) dissipation. However, it is still difficult to realize well-controlled electron localization and elucidate the related EMW loss mechanisms for current researches. In this study, a novel two-dimensional MXene (Ti3C2Tx...
Materials Science & Metallurgy
https://sinotechintel.com/paper/metalsupport-interaction-induced-electron-localization-in-rationally-designed-metal-sites-anchored-mxene-enables-boosted-electromagnetic-wave-attenuation
23
From Wave Energy to Electricity: Functional Design and Performance Analysis of Triboelectric Nanogenerators
10.1007/s40820-025-01811-3
Ying Lou, Mengfan Li, Aifang Yu, Junyi Zhai, Zhong Lin Wang
Triboelectric nanogenerators (TENGs) offer a self-sustaining power solution for marine regions abundant in resources but constrained by energy availability. Since their pioneering use in wave energy harvesting in 2014, nearly a decade of advancements has yielded nearly thousands of research articles in this domain. Res...
Materials Science & Metallurgy
https://sinotechintel.com/paper/from-wave-energy-to-electricity-functional-design-and-performance-analysis-of-triboelectric-nanogenerators
24
Recent Progress of Electrospun Nanofiber-Based Composite Materials for Monitoring Physical, Physiological, and Body Fluid Signals
10.1007/s40820-025-01804-2
Fang Guo, Zheng Ren, Shanchi Wang, Yu Xie, Jialin Pan, Jianying Huang, Tianxue Zhu, Si Cheng, Yuekun Lai
Flexible electronic skin (E-skin) sensors offer innovative solutions for detecting human body signals, enabling human–machine interactions and advancing the development of intelligent robotics. Electrospun nanofibers are particularly well-suited for E-skin applications due to their exceptional mechanical properties, tu...
Materials Science & Metallurgy
https://sinotechintel.com/paper/recent-progress-of-electrospun-nanofiber-based-composite-materials-for-monitoring-physical-physiological-and-body-fluid-signals
25
High-Reliability Thermoreceptors with Minimal Temporal and Spatial Variations Through Photo-Induced Patterning Thermoelectrics
10.1007/s40820-025-01821-1
Chunyu Du, Yue Hu, Xiao Xiao, Farid Manshaii, Lirong Liang, Jun Chen, Guangming Chen
The development of bionic sensing devices with advanced physiological functionalities has attracted significant attention in flexible electronics. In this study, we innovatively develop an air-stable photo-induced n-type dopant and a sophisticated photo-induced patterning technology to construct high-resolution joint-f...
Materials Science & Metallurgy
https://sinotechintel.com/paper/high-reliability-thermoreceptors-with-minimal-temporal-and-spatial-variations-through-photo-induced-patterning-thermoelectrics
26
Heteroatoms Synergistic Anchoring Vacancies in Phosphorus-Doped CoSe2 Enable Ultrahigh Activity and Stability in Li–S Batteries
10.1007/s40820-025-01806-0
Xiaoya Zhou, Wei Mao, Chengwei Ye, Qi Liang, Peng Wang, Xuebin Wang, Shaochun Tang
Electrocatalyst activity and stability demonstrate a β€œsee-saw” relationship. Introducing vacancies (Vo) enhances the activity by improving reactant affinity and increasing accessible active sites. However, deficient or excessive Vo reduces polysulfide adsorption and lowers catalytic stability. Herein, a novel β€œheteroat...
Materials Science & Metallurgy
https://sinotechintel.com/paper/heteroatoms-synergistic-anchoring-vacancies-in-phosphorus-doped-cose2-enable-ultrahigh-activity-and-stability-in-lis-batteries
27
Understanding Electrolytes and Interface Chemistry for Sustainable Nonaqueous Metal–CO2 Batteries
10.1007/s40820-025-01801-5
Bijiao He, Yunnian Ge, Fang Zhang, Huajun Tian, Yan Xin, Yong Lei, Yang Yang
Metal–carbon dioxide (CO2) batteries hold great promise for reducing greenhouse gas emissions and are regarded as one of the most promising energy storage techniques due to their efficiency advantages in CO2 recovery and conversion. Moreover, rechargeable nonaqueous metal–CO2 batteries have attracted much attention due...
Materials Science & Metallurgy
https://sinotechintel.com/paper/understanding-electrolytes-and-interface-chemistry-for-sustainable-nonaqueous-metalco2-batteries
28
B-Bridge Regulated Asymmetric Dual-Atomic Catalysts for Synergistically Enhanced Styrene Mineralization and CO2 Reduction
10.1007/s40820-025-01820-2
Xiai Zhang, Zhongshuang Xu, Xinwei Zhang, Jingquan Wang, Dan Liu, Huanran Miao, Tong Wang, Zhimao Yang, Qikui Fan, Chuncai Kong
Developing innovative resource utilization strategies to achieve sustainable recycling of waste-to-fuel is highly desirable, yet the design of cost-effective bifunctional catalysts with dual high-efficiency remains unexplored. While the Fenton-like reaction relies on enhancing peroxymonosulfate (PMS) adsorption and acc...
Materials Science & Metallurgy
https://sinotechintel.com/paper/b-bridge-regulated-asymmetric-dual-atomic-catalysts-for-synergistically-enhanced-styrene-mineralization-and-co2-reduction
29
Two-Dimensional TiO2 Ultraviolet Filters for Sunscreens
10.1007/s40820-025-01805-1
Ruoning Yang, Jiefu Chen, Xiang Li, Yaxin Zhang, Baofu Ding, Yujiangsheng Xu, Shaoqiang Luo, Shaohua Ma, Xingang Ren, Gang Liu, Ling Qiu, Hui-Ming Cheng
Titanium dioxide (TiO2) has been an important protective ingredient in mineral-based sunscreens since the 1990s. However, traditional TiO2 nanoparticle formulations have seen little improvement over the past decades and continue to face persistent challenges related to light transmission, biosafety, and visual appearan...
Materials Science & Metallurgy
https://sinotechintel.com/paper/two-dimensional-tio2-ultraviolet-filters-for-sunscreens
30
Hydrolysis-Engineered Robust Porous Micron Silicon Anode for High-Energy Lithium-Ion Batteries
10.1007/s40820-025-01808-y
Mili Liu, Jiangwen Liu, Yunqi Jia, Chen Li, Anwei Zhang, Renzong Hu, Jun Liu, Chengyun Wang, Longtao Ma, Liuzhang Ouyang
Micro-silicon (Si) anode that features high theoretical capacity and fine tap density is ideal for energy-dense lithium-ion batteries. However, the substantial localized mechanical strain caused by the large volume expansion often results in electrode disintegration and capacity loss. Herein, a microporous Si anode wit...
Materials Science & Metallurgy
https://sinotechintel.com/paper/hydrolysis-engineered-robust-porous-micron-silicon-anode-for-high-energy-lithium-ion-batteries
31
Regulating the Coordination Environment of H2O in Hydrogel Electrolyte for a High-Environment-Adaptable and High-Stability Flexible Zn Devices
10.1007/s40820-025-01810-4
Jianghe Liu, Qianxi Dang, Jodie Yuwono, Shilin Zhang, Zhixin Tai, Zaiping Guo, Yajie Liu
Aqueous zinc-ion batteries are promising candidates as stationary storage systems for power-grid applications due to their high safety and low cost. The practical implementation of Zn-ion batteries currently still faces formidable challenges because of Zn dendrite growth, hydrogen evolution, and inadequate environmenta...
Materials Science & Metallurgy
https://sinotechintel.com/paper/regulating-the-coordination-environment-of-h2o-in-hydrogel-electrolyte-for-a-high-environment-adaptable-and-high-stability-flexible-zn-devices
32
Binder-Free Immobilization of Photocatalyst on Membrane Surface for Efficient Photocatalytic H2O2 Production and Water Decontamination
10.1007/s40820-025-01822-0
Zhen-Yu Hu, Tian Liu, Yu-Ru Yang, Alicia Kyoungjin An, Kim Meow Liew, Wen-Wei Li
In photocatalytic water treatment processes, the particulate photocatalysts are typically immobilized on membrane, through either chemical/physical loading onto the surface or directly embedding in the membrane matrix. However, these immobilization strategies inevitably compromise the interfacial mass diffusion and cau...
Materials Science & Metallurgy
https://sinotechintel.com/paper/binder-free-immobilization-of-photocatalyst-on-membrane-surface-for-efficient-photocatalytic-h2o2-production-and-water-decontamination
33
A Strongly Coupled Cluster Heterostructure with Pt–N–Mo Bonding for Durable and Efficient H2 Evolution in Anion-Exchange Membrane Water Electrolyzers
10.1007/s40820-025-01798-x
Wenbo Zhou, Yichao Huang, Hanqing Cai, Tao Wang, Haitao Li, Chao Zhang, Lianming Zhao, Lulu Chen, Meihong Liao, Zhiqing Tang, Kai Chen, Jing Gu, Wenpei Gao, Zhuangjun Fan, Zhenhai Wen
Creating strongly coupled heterostructures with favorable catalytic activities is crucial for promoting the performance of catalytic reactions, especially those involve multiple intermediates. Herein, we fabricated a strongly coupled platinum/molybdenum nitrides nanocluster heterostructure on nitrogen-doped reduced gra...
Materials Science & Metallurgy
https://sinotechintel.com/paper/a-strongly-coupled-cluster-heterostructure-with-ptnmo-bonding-for-durable-and-efficient-h2-evolution-in-anion-exchange-membrane-water-electrolyzers
34
Engineering Bifunctional Catalytic Microenvironments for Durable and High-Energy-Density Metal–Air Batteries
10.1007/s40820-025-01799-w
Jean Marie Vianney Nsanzimana, Lebin Cai, Zhongqing Jiang, Bao Yu Xia, Thandavarayan Maiyalagan
Rechargeable metal–air batteries have gained significant interest due to their high energy density and environmental benignity. However, these batteries face significant challenges, particularly related to the air-breathing electrode, resulting in poor cycle life, low efficiency, and catalyst degradation. Developing a ...
Materials Science & Metallurgy
https://sinotechintel.com/paper/engineering-bifunctional-catalytic-microenvironments-for-durable-and-high-energy-density-metalair-batteries
35
An Efficient Deep Learning Framework for Revealing the Evolution of Characterization Methods in Nanoscience
10.1007/s40820-025-01807-z
Hui-Cong Duan, Long-Xing Lin, Ji-Chun Wang, Tong-Ruo Diao, Sheng-Jie Qiu, Bi-Jun Geng, Jia Shi, Shu Hu, Yang Yang
Text mining has emerged as a powerful strategy for extracting domain knowledge structure from large amounts of text data. To date, most text mining methods are restricted to specific literature information, resulting in incomplete knowledge graphs. Here, we report a method that combines citation analysis with topic mod...
Materials Science & Metallurgy
https://sinotechintel.com/paper/an-efficient-deep-learning-framework-for-revealing-the-evolution-of-characterization-methods-in-nanoscience
36
Mixed-Dimensional Nanowires/Nanosheet Heterojunction of GaSb/Bi2O2Se for Self-Powered Near-Infrared Photodetection and Photocommunication
10.1007/s40820-025-01793-2
Guangcan Wang, Zixu Sa, Zeqi Zang, Pengsheng Li, Mingxu Wang, Bowen Yang, Xiaoyue Wang, Yanxue Yin, Zai-xing Yang
With high surface-to-volume ratio, the abundant surface states and high carrier concentration are challenging the near-infrared photodetection behaviors of narrow band gap semiconductors nanowires. In this study, the narrow band gap semiconductor of Bi2O2Se nanosheets (NSs) is adopted to construct mixed-dimensional het...
Materials Science & Metallurgy
https://sinotechintel.com/paper/mixed-dimensional-nanowiresnanosheet-heterojunction-of-gasbbi2o2se-for-self-powered-near-infrared-photodetection-and-photocommunication
37
In Situ Generated Sulfate-Facilitated Efficient Nitrate Electrosynthesis on 2D PdS2 with Unique Imitating Growth Feature
10.1007/s40820-025-01803-3
Rui Zhang, Hui Mao, Ziyi Wang, Shengke Ma, Shuyao Wu, Qiong Wu, Daliang Liu, Hui Li, Yang Fu, Xiaoning Li, Tianyi Ma
As a green sustainable alternative technology, synthesizing nitrate by electrocatalytic nitrogen oxidation reaction (NOR) can replace the traditional energy-intensive Ostwald process. But low nitrogen fixation yields and poor selectivity due to the high bond energy of the N≑N bond and competition from the oxygen evolut...
Materials Science & Metallurgy
https://sinotechintel.com/paper/in-situ-generated-sulfate-facilitated-efficient-nitrate-electrosynthesis-on-2d-pds2-with-unique-imitating-growth-feature
38
All-Weather 3D Self-Folding Fabric for Adaptive Personal Thermoregulation
10.1007/s40820-025-01812-2
Xiaohui Zhang, Yuheng Gu, Xujiang Chao, Zhaokun Wang, Shitong Wu, Jinhao Xu, Ziqi Li, Mengjiao Pan, Dahua Shou
In the era of global climate change, personal thermoregulation has become critical to addressing the growing demands for thermoadaptability, comfort, health, and work efficiency in dynamic environments. Here, we introduce an innovative three-dimensional (3D) self-folding knitted fabric that achieves dual thermal regula...
Materials Science & Metallurgy
https://sinotechintel.com/paper/all-weather-3d-self-folding-fabric-for-adaptive-personal-thermoregulation
39
Multifunctional Asymmetric Bilayer Aerogels for Highly Efficient Electromagnetic Interference Shielding with Ultrahigh Electromagnetic Wave Absorption
10.1007/s40820-025-01800-6
Cheng-Zhang Qi, Peng Min, Xinfeng Zhou, Meng Jin, Xia Sun, Jianjun Wu, Yanjun Liu, Hao-Bin Zhang, Zhong-Zhen Yu
Although multifunctional electromagnetic interference (EMI) shielding materials with ultrahigh electromagnetic wave absorption are highly required to solve increasingly serious electromagnetic radiation and pollution and meet multi-scenario applications, EMI shielding materials usually cause a lot of reflection and hav...
Materials Science & Metallurgy
https://sinotechintel.com/paper/multifunctional-asymmetric-bilayer-aerogels-for-highly-efficient-electromagnetic-interference-shielding-with-ultrahigh-electromagnetic-wave-absorption
40
Eliciting Dual-Niche Immunological Priming by Acupoint Delivery of Nanovaccines
10.1007/s40820-025-01789-y
Lu Wang, Yanhong Sun, Meiling Yan, Lihua Wang, Yiyang Wang, Mengmeng Zhang, Qian Li, Huangan Wu, Jinyao Liu, Chunhai Fan
Immunization has long played essential roles in preventing diseases. However, the desire for precision delivery of vaccines to boost a robust immune response remains largely unmet. Here, we describe the use of acupoint delivery of nanovaccines (ADN) to elicit dual-niche immunological priming. ADN can simultaneously sti...
Materials Science & Metallurgy
https://sinotechintel.com/paper/eliciting-dual-niche-immunological-priming-by-acupoint-delivery-of-nanovaccines
41
Enhancement of Li+ Transport Through Intermediate Phase in High-Content Inorganic Composite Quasi-Solid-State Electrolytes
10.1007/s40820-025-01774-5
Haoyang Yuan, Wenjun Lin, Changhao Tian, Mihaela Buga, Tao Huang, Aishui Yu
Quasi-solid-state electrolytes, which integrate the safety characteristics of inorganic materials, the flexibility of polymers, and the high ionic conductivity of liquid electrolytes, represent a transitional solution for high-energy-density lithium batteries. However, the mechanisms by which inorganic fillers enhance ...
Materials Science & Metallurgy
https://sinotechintel.com/paper/enhancement-of-li-transport-through-intermediate-phase-in-high-content-inorganic-composite-quasi-solid-state-electrolytes
42
Synthesis Strategies and Multi-field Applications of Nanoscale High-Entropy Alloys
10.1007/s40820-025-01779-0
Bin Zhang, Qingxue Mu, Ye Pei, Siyu Hu, Shuo Liu, Taolei Sun, Guanbin Gao
Alloying strategies have proven effective in enhancing the properties of metallic materials. However, conventional alloying strategies face significant limitations in preparing nanoscale multi-alloys and continuous optimizing surface-active sites. High-entropy alloys (HEAs) display a broader spectrum of unique properti...
Materials Science & Metallurgy
https://sinotechintel.com/paper/synthesis-strategies-and-multi-field-applications-of-nanoscale-high-entropy-alloys
43
Artificial Intelligence Empowers Solid-State Batteries for Material Screening and Performance Evaluation
10.1007/s40820-025-01797-y
Sheng Wang, Jincheng Liu, Xiaopan Song, Huajian Xu, Yang Gu, Junyu Fan, Bin Sun, Linwei Yu
Solid-state batteries are widely recognized as the next-generation energy storage devices with high specific energy, high safety, and high environmental adaptability. However, the research and development of solid-state batteries are resource-intensive and time-consuming due to their complex chemical environment, rende...
Materials Science & Metallurgy
https://sinotechintel.com/paper/artificial-intelligence-empowers-solid-state-batteries-for-material-screening-and-performance-evaluation
44
Grain Boundaries Contribute to the Performance of Perovskite Solar Cells by Promoting Charge Separations
10.1007/s40820-025-01795-0
Peng Xu, Pengfei Wang, Minhuan Wang, Fengke Sun, Jing Leng, Yantao Shi, Shengye Jin, Wenming Tian
Historically seen as a limitation, grain boundaries (GBs) within polycrystalline metal halide perovskite (MHP) films are thought to impede charge transport, adversely impacting the efficiency of perovskite solar cells (PSCs). In this study, we employ home-built confocal photoluminescence microscopy, combined with photo...
Materials Science & Metallurgy
https://sinotechintel.com/paper/grain-boundaries-contribute-to-the-performance-of-perovskite-solar-cells-by-promoting-charge-separations
45
Fibre Computer Enables More Accurate Recognition of Human Activity
10.1007/s40820-025-01809-x
Qianyi Cheng, Jianfeng Li, Qichong Zhang
The advancement of fibre electronics is crucial for developing wearable smart textiles. However, traditional single-function fibres are typically limited to basic sensing and data collection capabilities, lacking effective computational and multimodal signal processing abilities, thus significantly restricting their po...
Materials Science & Metallurgy
https://sinotechintel.com/paper/fibre-computer-enables-more-accurate-recognition-of-human-activity
46
Machine Learning Enabled Reusable Adhesion, Entangled Network-Based Hydrogel for Long-Term, High-Fidelity EEG Recording and Attention Assessment
10.1007/s40820-025-01780-7
Kai Zheng, Chengcheng Zheng, Lixian Zhu, Bihai Yang, Xiaokun Jin, Su Wang, Zikai Song, Jingyu Liu, Yan Xiong, Fuze Tian, Ran Cai, Bin Hu
Due to their high mechanical compliance and excellent biocompatibility, conductive hydrogels exhibit significant potential for applications in flexible electronics. However, as the demand for high sensitivity, superior mechanical properties, and strong adhesion performance continues to grow, many conventional fabricati...
Materials Science & Metallurgy
https://sinotechintel.com/paper/machine-learning-enabled-reusable-adhesion-entangled-network-based-hydrogel-for-long-term-high-fidelity-eeg-recording-and-attention-assessment
47
Advances in Metal Halide Perovskite Scintillators for X-Ray Detection
10.1007/s40820-025-01772-7
Ting Wang, Guoqiang Zeng, Yang Michael Yang, Zhi Yang, Tianchi Wang, Hao Li, Lulu Han, Xue Yu, Xuhui Xu, Xiaoping Ouyang
The relentless pursuit of advanced X-ray detection technologies has been significantly bolstered by the emergence of metal halides perovskites (MHPs) and their derivatives, which possess remarkable light yield and X-ray sensitivity. This comprehensive review delves into cutting-edge approaches for optimizing MHP scinti...
Materials Science & Metallurgy
https://sinotechintel.com/paper/advances-in-metal-halide-perovskite-scintillators-for-x-ray-detection
48
Specific Sn–O–Fe Active Sites from Atomically Sn-Doping Porous Fe2O3 for Ultrasensitive NO2 Detection
10.1007/s40820-025-01770-9
Yihong Zhong, Guotao Yuan, Dequan Bao, Yi Tao, Zhenqiu Gao, Wei Zhao, Shuo Li, Yuting Yang, Pingping Zhang, Hao Zhang, Xuhui Sun
Conventional gas sensing materials (e.g., metal oxides) suffer from deficient sensitivity and serve cross-sensitivity issues due to the lack of efficient adsorption sites. Herein, the heteroatom atomically doping strategy is demonstrated to significantly enhance the sensing performance of metal oxides-based gas sensing...
Materials Science & Metallurgy
https://sinotechintel.com/paper/specific-snofe-active-sites-from-atomically-sn-doping-porous-fe2o3-for-ultrasensitive-no2-detection
49
Designing Amino Functionalized Titanium-Organic Framework on Separators Toward Sieving and Redistribution of Polysulfides in Lithium-Sulfur Batteries
10.1007/s40820-025-01733-0
Xiaoya Kang, Tianqi He, Hao Dang, Xiangye Li, Yumeng Wang, Fuliang Zhu, Fen Ran
Shuttle effect of polysulfides overshadows the superiorities of lithium–sulfur batteries. Size–sieving effect could address this thorny trouble rely on size differ in polysulfides and lithium ions. However, clogged polysulfides pose some challenges for cathode and are rarely recycled during charging/discharging. Herein...
Materials Science & Metallurgy
https://sinotechintel.com/paper/designing-amino-functionalized-titanium-organic-framework-on-separators-toward-sieving-and-redistribution-of-polysulfides-in-lithium-sulfur-batteries
50
Deciphering Local Microstrain-Induced Optimization of Asymmetric Fe Single Atomic Sites for Efficient Oxygen Reduction
10.1007/s40820-025-01783-4
Peng Zhang, Siying Huang, Kuo Chen, Xiaoqi Liu, Yachao Xu, Yongming Chai, Yunqi Liu, Yuan Pan
Disrupting the symmetric electron distribution of porphyrin-like Fe single-atom catalysts has been considered as an effective way to harvest high intrinsic activity. Understanding the catalytic performance governed by geometric microstrains is highly desirable for further optimization of such efficient sites. Here, we ...
Materials Science & Metallurgy
https://sinotechintel.com/paper/deciphering-local-microstrain-induced-optimization-of-asymmetric-fe-single-atomic-sites-for-efficient-oxygen-reduction
51
Modified Near-Infrared Annealing Enabled Rapid and Homogeneous Crystallization of Perovskite Films for Efficient Solar Modules
10.1007/s40820-025-01792-3
Qing Chang, Peng He, Haosong Huang, Yingchen Peng, Xiao Han, Yang Shen, Jun Yin, Zhengjing Zhao, Ye Yang, Binghui Wu, Zhiguo Zhao, Jing Li, Nanfeng Zheng
Currently, perovskite solar cells have achieved commendable progresses in power conversion efficiency (PCE) and operational stability. However, some conventional laboratory-scale fabrication methods become challenging when scaling up material syntheses or device production. Particularly, the prolonged high-temperature ...
Materials Science & Metallurgy
https://sinotechintel.com/paper/modified-near-infrared-annealing-enabled-rapid-and-homogeneous-crystallization-of-perovskite-films-for-efficient-solar-modules
52
Electrolyte Additive-Assembled Interconnecting Molecules–Zinc Anode Interface for Zinc-Ion Hybrid Supercapacitors
10.1007/s40820-025-01794-1
Yang Li, Xu Li, Xinya Peng, Xinyu Yang, Feiyu Kang, Liubing Dong
Zinc-ion hybrid supercapacitors (ZHSs) are promising energy storage systems integrating high energy density and high-power density, whereas they are plagued by the poor electrochemical stability and inferior kinetics of zinc anodes. Herein, we report an electrolyte additive-assembled interconnecting molecules–zinc anod...
Materials Science & Metallurgy
https://sinotechintel.com/paper/electrolyte-additive-assembled-interconnecting-moleculeszinc-anode-interface-for-zinc-ion-hybrid-supercapacitors
53
MXene-Ti3C2Tx-Based Neuromorphic Computing: Physical Mechanisms, Performance Enhancement, and Cutting-Edge Computing
10.1007/s40820-025-01787-0
Kaiyang Wang, Shuhui Ren, Yunfang Jia, Xiaobing Yan, Lizhen Wang, Yubo Fan
Neuromorphic devices have shown great potential in simulating the function of biological neurons due to their efficient parallel information processing and low energy consumption. MXene-Ti3C2Tx, an emerging two-dimensional material, stands out as an ideal candidate for fabricating neuromorphic devices. Its exceptional ...
Materials Science & Metallurgy
https://sinotechintel.com/paper/mxene-ti3c2tx-based-neuromorphic-computing-physical-mechanisms-performance-enhancement-and-cutting-edge-computing
54
Aramid Nanofiber/MXene-Reinforced Polyelectrolyte Hydrogels for Absorption-Dominated Electromagnetic Interference Shielding and Wearable Sensing
10.1007/s40820-025-01791-4
Jinglun Guo, Tianyi Zhang, Xiaoyu Hao, Shuaijie Liu, Yuxin Zou, Jinjin Li, Wei Wu, Liming Chen, Xuqing Liu
Conductive hydrogels have garnered widespread attention as a versatile class of flexible electronics. Despite considerable advancements, current methodologies struggle to reconcile the fundamental trade-off between high conductivity and effective absorption-dominated electromagnetic interference (EMI) shielding, as dic...
Materials Science & Metallurgy
https://sinotechintel.com/paper/aramid-nanofibermxene-reinforced-polyelectrolyte-hydrogels-for-absorption-dominated-electromagnetic-interference-shielding-and-wearable-sensing
55
Machine Learning Tailored Anodes for Efficient Hydrogen Energy Generation in Proton-Conducting Solid Oxide Electrolysis Cells
10.1007/s40820-025-01764-7
Fangyuan Zheng, Baoyin Yuan, Youfeng Cai, Huanxin Xiang, Chunmei Tang, Ling Meng, Lei Du, Xiting Zhang, Feng Jiao, Yoshitaka Aoki, Ning Wang, Siyu Ye
In the global trend of vigorously developing hydrogen energy, proton-conducting solid oxide electrolysis cells (P-SOECs) have attracted significant attention due to their advantages of high efficiency and not requiring precious metals. However, the application of P-SOECs faces challenges, particularly in developing hig...
Materials Science & Metallurgy
https://sinotechintel.com/paper/machine-learning-tailored-anodes-for-efficient-hydrogen-energy-generation-in-proton-conducting-solid-oxide-electrolysis-cells
56
Recent Advances in Spectrally Selective Daytime Radiative Cooling Materials
10.1007/s40820-025-01771-8
An-Quan Xie, Hui Qiu, Wangkai Jiang, Yu Wang, Shichao Niu, Ke-Qin Zhang, Ghim Wei Ho, Xiao-Qiao Wang
Daytime radiative cooling is an eco-friendly and passive cooling technology that operates without external energy input. Materials designed for this purpose are engineered to possess high reflectivity in the solar spectrum and high emissivity within the atmospheric transmission window. Unlike broadband-emissive daytime...
Materials Science & Metallurgy
https://sinotechintel.com/paper/recent-advances-in-spectrally-selective-daytime-radiative-cooling-materials
57
Efficient Thermally Evaporated Near-Infrared Perovskite Light-Emitting Diodes via Phase Regulation
10.1007/s40820-025-01776-3
Siwei He, Lanxin Qin, Zhengzheng Liu, Jae-Wook Kang, Jiajun Luo, Juan Du
Ξ±-phase formamidinium lead triiodide (FAPbI3) has demonstrated extraordinary properties for near-infrared perovskite light-emitting diodes (NIR-PeLEDs). The vacuum processing technique has recently received increasing attention from industry and academia due to its solvent-free feature and compatibility with large-scal...
Materials Science & Metallurgy
https://sinotechintel.com/paper/efficient-thermally-evaporated-near-infrared-perovskite-light-emitting-diodes-via-phase-regulation
58
Near-Sensor Edge Computing System Enabled by a CMOS Compatible Photonic Integrated Circuit Platform Using Bilayer AlN/Si Waveguides
10.1007/s40820-025-01743-y
Zhihao Ren, Zixuan Zhang, Yangyang Zhuge, Zian Xiao, Siyu Xu, Jingkai Zhou, Chengkuo Lee
The rise of large-scale artificial intelligence (AI) models, such as ChatGPT, DeepSeek, and autonomous vehicle systems, has significantly advanced the boundaries of AI, enabling highly complex tasks in natural language processing, image recognition, and real-time decision-making. However, these models demand immense co...
Materials Science & Metallurgy
https://sinotechintel.com/paper/near-sensor-edge-computing-system-enabled-by-a-cmos-compatible-photonic-integrated-circuit-platform-using-bilayer-alnsi-waveguides
59
Chemical Fermentation Pore Creation on Multilevel Bio-Carbon Structure with In Situ Ni-Fe Alloy Loading for Superior Oxygen Evolution Reaction Electrocatalysis
10.1007/s40820-025-01777-2
Qiaoling Kang, Mengfei Su, Yana Luo, Ting Wang, Feng Gao, Qingyi Lu
In the quest for high-efficiency and cost-effective catalysts for the oxygen evolution reaction (OER), a novel biomass-driven strategy is developed to fabricate a unique one-dimensional rod-arrays@two-dimensional interlaced-sheets (C1D@2D) network. A groundbreaking chemical fermentation (CF) pore-generation mechanism, ...
Materials Science & Metallurgy
https://sinotechintel.com/paper/chemical-fermentation-pore-creation-on-multilevel-bio-carbon-structure-with-in-situ-ni-fe-alloy-loading-for-superior-oxygen-evolution-reaction-electrocatalysis
60
Critical Bimetallic Phosphide Layer Enables Fast Electron Transfer and Extra Energy Supply for Flexible Quasi-Solid-State Zinc Batteries
10.1007/s40820-025-01784-3
Leixin Wu, Linfeng Lv, Yibo Xiong, Wenwu Wang, Xiaoqiao Liao, Xiyao Huang, Ruiqi Song, Zhe Zhu, Yixue Duan, Lei Wang, Zeyu Ma, Jiangwang Wang, Fazal ul Nisa, Kai Yang, Muhammad Tahir, Longbing Qu, Wenlong Cai, Liang He
Nickel-based cathodes in aqueous nickel-zinc batteries typically suffer from sluggish reaction kinetics and limited energy density. In situ introduction of metal phosphides and rational construction of heterostructures can effectively promote electron/ion transport. However, the complex evolution of phosphidation and i...
Materials Science & Metallurgy
https://sinotechintel.com/paper/critical-bimetallic-phosphide-layer-enables-fast-electron-transfer-and-extra-energy-supply-for-flexible-quasi-solid-state-zinc-batteries
61
TENG-Boosted Smart Sports with Energy Autonomy and Digital Intelligence
10.1007/s40820-025-01778-1
Yunlu Wang, Zihao Gao, Wei Wu, Yao Xiong, Jianjun Luo, Qijun Sun, Yupeng Mao, Zhong Lin Wang
Technological advancements have profoundly transformed the sports domain, ushering it into the digital era. Services leveraging big data in intelligent sportsβ€”encompassing performance analytics, training statistical evaluations and metricsβ€”have become indispensable. These tools are vital in aiding athletes with their d...
Materials Science & Metallurgy
https://sinotechintel.com/paper/teng-boosted-smart-sports-with-energy-autonomy-and-digital-intelligence
62
Enhanced Regional Electric Potential Difference of Graphdiyne Through Asymmetric Substitution Strategy Boosts Li+ Migration in Composite Polymer Solid-State Electrolyte
10.1007/s40820-025-01790-5
Chao Jiang, Kaihang Wang, Luwei Zhang, Chunfang Zhang, Ning Wang
Low ionic conductivity is a major obstacle for polymer solid-state electrolytes. In response to this issue, a design concept of enhanced regional electric potential difference (EREPD) is proposed to modulate the interaction of nanofillers with other components in the composite polymer solid-state electrolytes (CPSEs). ...
Materials Science & Metallurgy
https://sinotechintel.com/paper/enhanced-regional-electric-potential-difference-of-graphdiyne-through-asymmetric-substitution-strategy-boosts-li-migration-in-composite-polymer-solid-state-electrolyte
63
Construction of High-Performance Membranes for Vanadium Redox Flow Batteries: Challenges, Development, and Perspectives
10.1007/s40820-025-01736-x
Tan Trung Kien Huynh, Tong Yang, Nayanthara P S, Yang Yang, Jiaye Ye, Hongxia Wang
While being a promising candidate for large-scale energy storage, the current market penetration of vanadium redox flow batteries (VRFBs) is still limited by several challenges. As one of the key components in VRFBs, a membrane is employed to separate the catholyte and anolyte to prevent the vanadium ions from cross-mi...
Materials Science & Metallurgy
https://sinotechintel.com/paper/construction-of-high-performance-membranes-for-vanadium-redox-flow-batteries-challenges-development-and-perspectives
64
Immobilizing Zwitterionic Molecular Brush in Functional Organic Interfacial Layers for Ultra-Stable Zn-Ion Batteries
10.1007/s40820-025-01782-5
Limeng Sun, Xianjun Cao, Li Gao, Jiayi Li, Chen Qian, Jinhu Wu, Xinming Nie, Hong Gao, Peng Huang, Yufei Zhao, Yong Wang, Jinqiang Zhang, Guoxiu Wang, Hao Liu
Rechargeable zinc-ion batteries have emerged as one of the most promising candidates for large-scale energy storage applications due to their high safety and low cost. However, the use of Zn metal in batteries suffers from many severe issues, including dendrite growth and parasitic reactions, which often lead to short ...
Materials Science & Metallurgy
https://sinotechintel.com/paper/immobilizing-zwitterionic-molecular-brush-in-functional-organic-interfacial-layers-for-ultra-stable-zn-ion-batteries
65
Highly Thermal Conductive and Electromagnetic Shielding Polymer Nanocomposites from Waste Masks
10.1007/s40820-025-01796-z
Xilin Zhang, Wenlong Luo, Yanqiu Chen, Qinghua Guo, Jing Luo, Paulomi Burey, Yangyang Gao, Yonglai Lu, Qiang Gao, Jingchao Li, Jianzhang Li, Pingan Song
Over 950 billion (about 3.8 million tons) masks have been consumed in the last four years around the world to protect human beings from COVID-19 and air pollution. However, very few of these used masks are being recycled, with the majority of them being landfilled or incinerated. To address this issue, we propose a rep...
Materials Science & Metallurgy
https://sinotechintel.com/paper/highly-thermal-conductive-and-electromagnetic-shielding-polymer-nanocomposites-from-waste-masks
66
Reducing the Voc Loss of Hole Transport Layer-Free Carbon-Based Perovskite Solar Cells via Dual Interfacial Passivation
10.1007/s40820-025-01775-4
Xian Zhang, Fangzhou Liu, Yan Guan, Yu Zou, Cuncun Wu, Dongchang Shi, Hongkai Zhang, Wenjin Yu, Dechun Zou, Yangyang Zhang, Lixin Xiao, Shijian Zheng
The hole transport layer (HTL)-free carbon-based perovskite solar cells (C-PSCs) are promising for commercialization owing to their excellent operational stability and simple fabrication process. However, the power conversion efficiencies (PCE) of C-PSCs are inferior to the metal electrode-based devices due to their op...
Materials Science & Metallurgy
https://sinotechintel.com/paper/reducing-the-voc-loss-of-hole-transport-layer-free-carbon-based-perovskite-solar-cells-via-dual-interfacial-passivation
67
Highest Solar-to-Hydrogen Conversion Efficiency in Cu2ZnSnS4 Photocathodes and Its Directly Unbiased Solar Seawater Splitting
10.1007/s40820-025-01755-8
Muhammad Abbas, Shuo Chen, Zhidong Li, Muhammad Ishaq, Zhuanghao Zheng, Juguang Hu, Zhenghua Su, Yanbo Li, Liming Ding, Guangxing Liang
Despite being an excellent candidate for a photocathode, Cu2ZnSnS4 (CZTS) performance is limited by suboptimal bulk and interfacial charge carrier dynamics. In this work, we introduce a facile and versatile CZTS precursor seed layer engineering technique, which significantly enhances crystal growth and mitigates detrim...
Materials Science & Metallurgy
https://sinotechintel.com/paper/highest-solar-to-hydrogen-conversion-efficiency-in-cu2znsns4-photocathodes-and-its-directly-unbiased-solar-seawater-splitting
68
Aspartame Endowed ZnO-Based Self-Healing Solid Electrolyte Interface Film for Long-Cycling and Wide-Temperature Aqueous Zn-Ion Batteries
10.1007/s40820-025-01765-6
Yunyu Shi, Yingkang Liu, Ruirui Chang, Guilin Zhang, Yuqing Rang, Zheng-Long Xu, Qi Meng, Penghui Cao, Xiangyang Zhou, Jingjing Tang, Juan Yang
Metallic Zn anodes suffer from hydrogen evolution and dendritic deposition in aqueous electrolytes, resulting in low Coulombic efficiency and poor cyclic stability for aqueous Zn-ion batteries (AZIBs). Constructing stable solid electrolyte interphase (SEI) with strong affinity for Zn and exclusion of water corrosion of...
Materials Science & Metallurgy
https://sinotechintel.com/paper/aspartame-endowed-zno-based-self-healing-solid-electrolyte-interface-film-for-long-cycling-and-wide-temperature-aqueous-zn-ion-batteries
69
Breaking Performance Limits of Zn Anodes in Aqueous Batteries by Tailoring Anion and Cation Additives
10.1007/s40820-025-01773-6
Zhaoxu Mai, Yuexing Lin, Jingying Sun, Chenhui Wang, Gongzheng Yang, Chengxin Wang
Crystallographic engineering of Zn anodes to favor the exposure of (002) planes is an effective approach for improving stability in aqueous electrolytes. However, achieving non-epitaxial electrodeposition with a pronounced (002) texture and maintaining this orientation during extended cycling remains challenging. This ...
Materials Science & Metallurgy
https://sinotechintel.com/paper/breaking-performance-limits-of-zn-anodes-in-aqueous-batteries-by-tailoring-anion-and-cation-additives
70
Induction Effect of Fluorine-Grafted Polymer-Based Electrolytes for High-Performance Lithium Metal Batteries
10.1007/s40820-025-01738-9
Haiman Hu, Jiajia Li, Fei Lin, Jiaqi Huang, Huaiyang Zheng, Haitao Zhang, Xiaoyan Ji
Quasi-solid-state composite electrolytes (QSCEs) show promise for high-performance solid-state batteries, while they still struggle with interfacial stability and cycling performance. Herein, a F-grafted QSCE (F-QSCE) was developed via copolymerizing the F monomers and ionic liquid monomers. The F-QSCE demonstrates bet...
Materials Science & Metallurgy
https://sinotechintel.com/paper/induction-effect-of-fluorine-grafted-polymer-based-electrolytes-for-high-performance-lithium-metal-batteries
71
Refining Single-Atom Catalytic Kinetics for Tumor Homologous-Targeted Catalytic Therapy
10.1007/s40820-025-01735-y
Hengke Liu, Shan Lei, Hongyu Li, Jiayingzi Wu, Ting He, Jing Lin, Peng Huang
Single-atom nanozymes (SAzymes) hold significant potential for tumor catalytic therapy, but their effectiveness is often compromised by low catalytic efficiency within tumor microenvironment. This efficiency is mainly influenced by key factors including hydrogen peroxide (H2O2) availability, acidity, and temperature. S...
Materials Science & Metallurgy
https://sinotechintel.com/paper/refining-single-atom-catalytic-kinetics-for-tumor-homologous-targeted-catalytic-therapy
72
Buried Interface Regulation with TbCl3 for Highly-Efficient All-Inorganic Perovskite/Silicon Tandem Solar Cells
10.1007/s40820-025-01763-8
Wenming Chai, Weidong Zhu, He Xi, Dazheng Chen, Hang Dong, Long Zhou, Hailong You, Jincheng Zhang, Chunfu Zhang, Chunxiang Zhu, Yue Hao
All-inorganic perovskite materials exhibit exceptional thermal stability and promising candidates for tandem devices, while their application is still in the initial stage. Here, a metal halide doping strategy was implemented to enhance device performance and stability for inverted CsPbI3 perovskite solar cells (PSCs),...
Materials Science & Metallurgy
https://sinotechintel.com/paper/buried-interface-regulation-with-tbcl3-for-highly-efficient-all-inorganic-perovskitesilicon-tandem-solar-cells
73
Applications of Carbon-Based Multivariable Chemical Sensors for Analyte Recognition
10.1007/s40820-025-01741-0
Lin Shi, Jian Song, Yu Wang, Heng Fu, Kingsley Patrick-Iwuanyanwu, Lei Zhang, Charles H. Lawrie, Jianhua Zhang
Over recent decades, carbon-based chemical sensor technologies have advanced significantly. Nevertheless, significant opportunities persist for enhancing analyte recognition capabilities, particularly in complex environments. Conventional monovariable sensors exhibit inherent limitations, such as susceptibility to inte...
Materials Science & Metallurgy
https://sinotechintel.com/paper/applications-of-carbon-based-multivariable-chemical-sensors-for-analyte-recognition
74
In Situ Polymerization in COF Boosts Li-Ion Conduction in Solid Polymer Electrolytes for Li Metal Batteries
10.1007/s40820-025-01768-3
Junchen Meng, Mengjia Yin, Kairui Guo, Xingping Zhou, Zhigang Xue
Solid polymer electrolytes (SPEs) have garnered considerable interest in the field of lithium metal batteries (LMBs) owing to their exceptional mechanical strength, excellent designability, and heightened safety characteristics. However, their inherently low ion transport efficiency poses a major challenge for their ap...
Materials Science & Metallurgy
https://sinotechintel.com/paper/in-situ-polymerization-in-cof-boosts-li-ion-conduction-in-solid-polymer-electrolytes-for-li-metal-batteries
75
AI-Enabled Piezoelectric Wearable for Joint Torque Monitoring
10.1007/s40820-025-01753-w
Jinke Chang, Jinchen Li, Jiahao Ye, Bowen Zhang, Jianan Chen, Yunjia Xia, Jingyu Lei, Tom Carlson, Rui Loureiro, Alexander M. Korsunsky, Jin-Chong Tan, Hubin Zhao
Joint health is critical for musculoskeletal (MSK) conditions that are affecting approximately one-third of the global population. Monitoring of joint torque can offer an important pathway for the evaluation of joint health and guided intervention. However, there is no technology that can provide the precision, effecti...
Materials Science & Metallurgy
https://sinotechintel.com/paper/ai-enabled-piezoelectric-wearable-for-joint-torque-monitoring
76
Universal Amplification-Free RNA Detection by Integrating CRISPR-Cas10 with Aptameric Graphene Field-Effect Transistor
10.1007/s40820-025-01730-3
Mingyuan Sun, Zhenxiao Yu, Shuai Wang, Jiaoyan Qiu, Yuzhen Huang, Xiaoshuang Chen, Yunhong Zhang, Chao Wang, Xue Zhang, Yanbo Liang, Hong Liu, Qunxin She, Yu Zhang, Lin Han
Amplification-free, highly sensitive, and specific nucleic acid detection is crucial for health monitoring and diagnosis. The type III CRISPR-Cas10 system, which provides viral immunity through CRISPR-associated protein effectors, enables a new amplification-free nucleic acid diagnostic tool. In this study, we develop ...
Materials Science & Metallurgy
https://sinotechintel.com/paper/universal-amplification-free-rna-detection-by-integrating-crispr-cas10-with-aptameric-graphene-field-effect-transistor
77
Two-Dimensional Materials, the Ultimate Solution for Future Electronics and Very-Large-Scale Integrated Circuits
10.1007/s40820-025-01769-2
Laixiang Qin, Li Wang
The relentless down-scaling of electronics grands the modern integrated circuits (ICs) with the high speed, low power dissipation and low cost, fulfilling diverse demands of modern life. Whereas, with the semiconductor industry entering into sub-10 nm technology nodes, degrading device performance and increasing power ...
Materials Science & Metallurgy
https://sinotechintel.com/paper/two-dimensional-materials-the-ultimate-solution-for-future-electronics-and-very-large-scale-integrated-circuits
78
Indium-MOF as Multifunctional Promoter to Remove Ionic Conductivity and Electrochemical Stability Constraints on Fluoropolymer Electrolytes for All-Solid-State Lithium Metal Battery
10.1007/s40820-025-01760-x
Xiong Xiong Liu, Long Pan, Haotian Zhang, Cancan Liu, Mufan Cao, Min Gao, Yuan Zhang, Zeyuan Xu, Yaping Wang, ZhengMing Sun
Fluoropolymers promise all-solid-state lithium metal batteries (ASLMBs) but suffer from two critical challenges. The first is the trade-off between ionic conductivity (Οƒ) and lithium anode reactions, closely related to high-content residual solvents. The second, usually consciously overlooked, is the fluoropolymer's in...
Materials Science & Metallurgy
https://sinotechintel.com/paper/indium-mof-as-multifunctional-promoter-to-remove-ionic-conductivity-and-electrochemical-stability-constraints-on-fluoropolymer-electrolytes-for-all-solid-state-lithium-metal-battery
79
Probing Interfacial Nanostructures of Electrochemical Energy Storage Systems by In-Situ Transmission Electron Microscopy
10.1007/s40820-025-01720-5
Guisheng Liang, Chang Zhang, Liting Yang, Yihao Liu, Minmin Liu, Xuhui Xiong, Chendi Yang, Xiaowei Lv, Wenbin You, Ke Pei, Chuan-Jian Zhong, Han-Wen Cheng, Renchao Che
The ability to control the electrode interfaces in an electrochemical energy storage system is essential for achieving the desired electrochemical performance. However, achieving this ability requires an in-depth understanding of the detailed interfacial nanostructures of the electrode under electrochemical operating c...
Materials Science & Metallurgy
https://sinotechintel.com/paper/probing-interfacial-nanostructures-of-electrochemical-energy-storage-systems-by-in-situ-transmission-electron-microscopy
80
A Mechanically Robust In-Situ Solidified Polymer Electrolyte for SiOx-Based Anodes Toward High-Energy Lithium Batteries
10.1007/s40820-025-01759-4
Cizhen Luo, Huanrui Zhang, Chenghao Sun, Xing Chen, Wenjun Zhang, Pengzhou Mu, Gaojie Xu, Rongxian Wu, Zhaolin Lv, Xinhong Zhou, Guanglei Cui
Silicon suboxide (SiOx, 0<x<2) is an appealing anode material to replace traditional graphite owing to its much higher theoretical specific capacity enabling higher-energy-density lithium batteries. Nevertheless, the huge volume change and rapid capacity decay of SiOx electrodes during cycling pose huge challenges to t...
Materials Science & Metallurgy
https://sinotechintel.com/paper/a-mechanically-robust-in-situ-solidified-polymer-electrolyte-for-siox-based-anodes-toward-high-energy-lithium-batteries
81
Single-Point Linkage Engineering in Conjugated Phthalocyanine-Based Covalent Organic Frameworks for Electrochemical CO2 Reduction
10.1007/s40820-025-01754-9
Wenchang Chen, Yi Zhang, Mingyu Yang, Chao Yang, Zheng Meng
The utilization of covalent organic frameworks (COFs) holds great potential for achieving tailorable tuning of catalytic performance through bottom-up modulation of the reticular structure. In this work, we show that a single-point structural alteration in the linkage within a nickel phthalocyanine (NiPc)-based series ...
Materials Science & Metallurgy
https://sinotechintel.com/paper/single-point-linkage-engineering-in-conjugated-phthalocyanine-based-covalent-organic-frameworks-for-electrochemical-co2-reduction
82
Exploring Single-Atom Nanozymes Toward Environmental Pollutants: Monitoring and Control
10.1007/s40820-025-01734-z
Guojian Wu, Si Li, Linpin Luo, Yuechun Li, Wentao Zhang, Heng Wang, Sha Liu, Chenxing Du, Jianlong Wang, Jie Cheng, Yongning Wu, Yizhong Shen
As environmental pollutants pose a serious threat to socioeconomic and environmental health, the development of simple, efficient, accurate and cost-effective methods for pollution monitoring and control remains a major challenge, but it is an unavoidable issue. In the past decade, the artificial nanozymes have been wi...
Materials Science & Metallurgy
https://sinotechintel.com/paper/exploring-single-atom-nanozymes-toward-environmental-pollutants-monitoring-and-control
83
Multifunctional Organic Materials, Devices, and Mechanisms for Neuroscience, Neuromorphic Computing, and Bioelectronics
10.1007/s40820-025-01756-7
Felix L. Hoch, Qishen Wang, Kian-Guan Lim, Desmond K. Loke
Neuromorphic computing has the potential to overcome limitations of traditional silicon technology in machine learning tasks. Recent advancements in large crossbar arrays and silicon-based asynchronous spiking neural networks have led to promising neuromorphic systems. However, developing compact parallel computing tec...
Materials Science & Metallurgy
https://sinotechintel.com/paper/multifunctional-organic-materials-devices-and-mechanisms-for-neuroscience-neuromorphic-computing-and-bioelectronics
84
Piezotronic Sensor for Bimodal Monitoring of Achilles Tendon Behavior
10.1007/s40820-025-01757-6
Zihan Wang, Shenglong Wang, Boling Lan, Yue Sun, Longchao Huang, Yong Ao, Xuelan Li, Long Jin, Weiqing Yang, Weili Deng
Bimodal pressure sensors capable of simultaneously detecting static and dynamic forces are essential to medical detection and bio-robotics. However, conventional pressure sensors typically integrate multiple operating mechanisms to achieve bimodal detection, leading to complex device architectures and challenges in sig...
Materials Science & Metallurgy
https://sinotechintel.com/paper/piezotronic-sensor-for-bimodal-monitoring-of-achilles-tendon-behavior
85
From Coils to Crawls: A Snake-Inspired Soft Robot for Multimodal Locomotion and Grasping
10.1007/s40820-025-01762-9
He Chen, Zhong Chen, Zonglin Liu, Jinhua Xiong, Qian Yan, Teng Fei, Xu Zhao, Fuhua Xue, Haowen Zheng, Huanxin Lian, Yunxiang Chen, Liangliang Xu, Qingyu Peng, Xiaodong He
Currently, numerous biomimetic robots inspired by natural biological systems have been developed. However, creating soft robots with versatile locomotion modes remains a significant challenge. Snakes, as invertebrate reptiles, exhibit diverse and powerful locomotion abilities, including prey constriction, sidewinding, ...
Materials Science & Metallurgy
https://sinotechintel.com/paper/from-coils-to-crawls-a-snake-inspired-soft-robot-for-multimodal-locomotion-and-grasping
86
Shadow-Assisted Sidewall Emission for Achieving Submicron Linewidth Light Source by Using Normal UV Photolithography
10.1007/s40820-025-01737-w
Junlong Li, Yanmin Guo, Kun Wang, Wei Huang, Hao Su, Wenhao Li, Xiongtu Zhou, Yongai Zhang, Tailiang Guo, Chaoxing Wu
Micro light sources are crucial tools for studying the interactions between light and matter at the micro/nanoscale, encompassing diverse applications across multiple disciplines. Despite numerous studies on reducing the size of micro light sources and enhancing optical resolution, the efficient and simple fabrication ...
Materials Science & Metallurgy
https://sinotechintel.com/paper/shadow-assisted-sidewall-emission-for-achieving-submicron-linewidth-light-source-by-using-normal-uv-photolithography
87
Bi-Layered, Ultrathin Coating Initiated Relay Response to Impart Superior Fire Resistance for Polymeric and Metallic Substrates
10.1007/s40820-025-01739-8
Wei Tang, Qi Chen, Junxiao Li, Xiang Ao, Yunhuan Liu, Lijun Qian, Silvia GonzΓ‘lez Prolongo, Yong Qiu, De-Yi Wang
Developing high-efficient flame-retardant coatings is crucial for fire safety polymer and battery fields. Traditional intumescent coatings and ceramifiable coatings struggle to provide immediate and prolonged protection simultaneously, which limits the applicability. To address this, an innovative bi-layered coating wi...
Materials Science & Metallurgy
https://sinotechintel.com/paper/bi-layered-ultrathin-coating-initiated-relay-response-to-impart-superior-fire-resistance-for-polymeric-and-metallic-substrates
88
Revealing the Oxygen Transport Challenges in Catalyst Layers in Proton Exchange Membrane Fuel Cells and Water Electrolysis
10.1007/s40820-025-01719-y
Huiyuan Li, Shu Yuan, Jiabin You, Congfan Zhao, Xiaojing Cheng, Liuxuan Luo, Xiaohui Yan, Shuiyun Shen, Junliang Zhang
Urgent requirements of the renewable energy boost the development of stable and clean hydrogen, which could effectively displace fossil fuels in mitigating climate changes. The efficient interconversion of hydrogen and electronic is highly based on polymer electrolyte membrane fuel cells (PEMFCs) and water electrolysis...
Materials Science & Metallurgy
https://sinotechintel.com/paper/revealing-the-oxygen-transport-challenges-in-catalyst-layers-in-proton-exchange-membrane-fuel-cells-and-water-electrolysis
89
Developing High-Energy, Stable All-Solid-State Lithium Batteries Using Aluminum-Based Anodes and High-Nickel Cathodes
10.1007/s40820-025-01751-y
Xin Wu, Meiyu Wang, Hui Pan, Xinyi Sun, Shaochun Tang, Haoshen Zhou, Ping He
Aluminum (Al) exhibits excellent electrical conductivity, mechanical ductility, and good chemical compatibility with high-ionic-conductivity electrolytes. This makes it more suitable as an anode material for all-solid-state lithium batteries (ASSLBs) compared to the overly reactive metallic lithium anode and the mechan...
Materials Science & Metallurgy
https://sinotechintel.com/paper/developing-high-energy-stable-all-solid-state-lithium-batteries-using-aluminum-based-anodes-and-high-nickel-cathodes
90
Multifunctional and Scalable Nanoparticles for Bimodal Image-Guided Phototherapy in Bladder Cancer Treatment
10.1007/s40820-025-01717-0
Menghuan Tang, Sohaib Mahri, Ya-Ping Shiau, Tasneem Mukarrama, Rodolfo Villa, Qiufang Zong, Kelsey Jane Racacho, Yangxiong Li, Yunyoung Lee, Yanyu Huang, Zhaoqing Cong, Jinhwan Kim, Yuanpei Li, Tzu-Yin Lin
Rational design of multifunctional nanoplatforms capable of combining therapeutic effects with real-time monitoring of drug distribution and tumor status is emerging as a promising approach in cancer nanomedicine. Here, we introduce pyropheophorbide a–bisaminoquinoline conjugate lipid nanoparticles (PPBC LNPs) as a bim...
Materials Science & Metallurgy
https://sinotechintel.com/paper/multifunctional-and-scalable-nanoparticles-for-bimodal-image-guided-phototherapy-in-bladder-cancer-treatment
91
Evolving Role of Conjugated Polymers in Nanoelectronics and Photonics
10.1007/s40820-025-01748-7
Amaan Chougle, Ayman Rezk, Syed Usama Bin Afzal, Abdul Khayum Mohammed, Dinesh Shetty, Ammar Nayfeh
Conjugated polymers (CPs) have emerged as an interesting class of materials in modern electronics and photonics, characterized by their unique delocalized Ο€-electron systems that confer high flexibility, tunable electronic properties, and solution processability. These organic polymers present a compelling alternative ...
Materials Science & Metallurgy
https://sinotechintel.com/paper/evolving-role-of-conjugated-polymers-in-nanoelectronics-and-photonics
92
Transformative Effect of Li Salt for Proactively Mitigating Interfacial Side Reactions in Sodium-Ion Batteries
10.1007/s40820-025-01742-z
Jooeun Byun, Joon Ha Chang, Chihyun Hwang, Chae Rim Lee, Miseung Kim, Jun Ho Song, Boseong Heo, Sunghun Choi, Jong Hyeok Han, Hee-Jae Jeon, Beom Tak Na, Youngjin Kim, Ji-Sang Yu, Hyun-seung Kim
The robust respective formations of a solid electrolyte interphase (SEI) and pillar at the surfaces of hard carbon and O3-type positive electrodes are the consequences of integrating LiPF6 salt into a sodium-ion battery electrolyte that considerably strengthens both interfaces of positive and negative electrodes. The i...
Materials Science & Metallurgy
https://sinotechintel.com/paper/transformative-effect-of-li-salt-for-proactively-mitigating-interfacial-side-reactions-in-sodium-ion-batteries
93
Hydrogel Electrolytes-Based Rechargeable Zinc-Ion Batteries under Harsh Conditions
10.1007/s40820-025-01727-y
Zhaoxi Shen, Zicheng Zhai, Yu Liu, Xuewei Bao, Yuechong Zhu, Tong Zhang, Linsen Li, Guo Hong, Ning Zhang
Rechargeable zinc (Zn)-ion batteries (RZIBs) with hydrogel electrolytes (HEs) have gained significant attention in the last decade owing to their high safety, low cost, sufficient material abundance, and superb environmental friendliness, which is extremely important for wearable energy storage applications. Given that...
Materials Science & Metallurgy
https://sinotechintel.com/paper/hydrogel-electrolytes-based-rechargeable-zinc-ion-batteries-under-harsh-conditions
94
Multi-Energy Conversion and Electromagnetic Shielding Enabled by Carbonized Polyimide/Kevlar/Graphene Oxide@ZIF-67 Bidirectional Complex Aerogel-Encapsulated Phase-Change Materials
10.1007/s40820-025-01761-w
Tao Shi, Xing Gao, Huan Liu, Xiaodong Wang
To address the limitations of conventional energy systems and optimize the energy conversion pathways and efficiency, a type of β€œfive-in-one” multifunctional phase-change composite with magnetothermal, electrothermal, solar-thermal, and thermoelectric energy conversion and electromagnetic shielding functions is develop...
Materials Science & Metallurgy
https://sinotechintel.com/paper/multi-energy-conversion-and-electromagnetic-shielding-enabled-by-carbonized-polyimidekevlargraphene-oxidezif-67-bidirectional-complex-aerogel-encapsulated-phase-change-materials
95
Tailoring Artificial Solid Electrolyte Interphase via MoS2 Sacrificial Thin Film for Li-Free All-Solid-State Batteries
10.1007/s40820-025-01729-w
Dong-Bum Seo, Dohun Kim, Mee-Ree Kim, Jimin Kwon, Hyeong Jun Kook, Saewon Kang, Soonmin Yim, Sun Sook Lee, Dong Ok Shin, Ki-Seok An, Sangbaek Park
Anode-free all-solid-state batteries (AFASSBs) are potential candidates for next-generation electric mobility devices that offer superior energy density and stability by eliminating Li from the anode. However, despite its potential to stabilize the interface between sulfide solid electrolytes (SEs) and anode-free curre...
Materials Science & Metallurgy
https://sinotechintel.com/paper/tailoring-artificial-solid-electrolyte-interphase-via-mos2-sacrificial-thin-film-for-li-free-all-solid-state-batteries
96
Single-Crystal Diamond Nanowires Embedded with Platinum Nanoparticles for High-Temperature Solar-Blind Photodetector
10.1007/s40820-025-01746-9
Jiaqi Lu, Xinglai Zhang, Shun Feng, Bing Yang, Ming Huang, Yubin Guo, Lingyue Weng, Nan Huang, Lusheng Liu, Xin Jiang, Dongming Sun, Huiming Cheng
Diamond, an ultrawide-bandgap semiconductor material, is promising for solar-blind ultraviolet photodetectors in extreme environments. However, when exposed to high-temperature conditions, diamond photodetector surfaces are unavoidably terminated with oxygen, leading to low photoresponsivity. To address this limitation...
Materials Science & Metallurgy
https://sinotechintel.com/paper/single-crystal-diamond-nanowires-embedded-with-platinum-nanoparticles-for-high-temperature-solar-blind-photodetector
97
Anisotropic Hygroscopic Hydrogels with Synergistic Insulation-Radiation-Evaporation for High-Power and Self-Sustained Passive Daytime Cooling
10.1007/s40820-025-01766-5
Xiuli Dong, Kit-Ying Chan, Xuemin Yin, Yu Zhang, Xiaomeng Zhao, Yunfei Yang, Zhenyu Wang, Xi Shen
Hygroscopic hydrogel is a promising evaporative-cooling material for high-power passive daytime cooling with water self-regeneration. However, undesired solar and environmental heating makes it a challenge to maintain sub-ambient daytime cooling. While different strategies have been developed to mitigate heat gains, th...
Materials Science & Metallurgy
https://sinotechintel.com/paper/anisotropic-hygroscopic-hydrogels-with-synergistic-insulation-radiation-evaporation-for-high-power-and-self-sustained-passive-daytime-cooling
98
Se-Regulated MnS Porous Nanocubes Encapsulated in Carbon Nanofibers as High-Performance Anode for Sodium-Ion Batteries
10.1007/s40820-025-01767-4
Puwu Liang, Duo Pan, Xiang Hu, Ke R. Yang, Yangjie Liu, Zijing Huo, Zheng Bo, Lihong Xu, Junhua Xu, Zhenhai Wen
Manganese-based chalcogenides have significant potential as anodes for sodium-ion batteries (SIBs) due to their high theoretical specific capacity, abundant natural reserves, and environmental friendliness. However, their application is hindered by poor cycling stability, resulting from severe volume changes during cyc...
Materials Science & Metallurgy
https://sinotechintel.com/paper/se-regulated-mns-porous-nanocubes-encapsulated-in-carbon-nanofibers-as-high-performance-anode-for-sodium-ion-batteries
99
Joule Heating-Driven sp2-C Domains Modulation in Biomass Carbon for High-Performance Bifunctional Oxygen Electrocatalysis
10.1007/s40820-025-01725-0
Jiawei He, Yuying Zhao, Yang Li, Qixin Yuan, Yuhan Wu, Kui Wang, Kang Sun, Jingjie Wu, Jianchun Jiang, Baohua Zhang, Liang Wang, Mengmeng Fan
Natural biomass-derived carbon material is one promising alternative to traditional graphene-based catalyst for oxygen electrocatalysis. However, their electrocatalytic performance were constrained by the limited modulating strategy. Herein, using N-doped commercial coconut shell-derived activated carbon (AC) as cataly...
Materials Science & Metallurgy
https://sinotechintel.com/paper/joule-heating-driven-sp2-c-domains-modulation-in-biomass-carbon-for-high-performance-bifunctional-oxygen-electrocatalysis
100
BiOCl Atomic Layers with Electrons Enriched Active Sites Exposed for Efficient Photocatalytic CO2 Overall Splitting
10.1007/s40820-025-01723-2
Ting Peng, Yiqing Wang, Chung-Li Dong, Ta Thi Thuy Nga, Binglan Wu, Yiduo Wang, Qingqing Guan, Wenjie Zhang, Shaohua Shen
Given the limited exposure of active sites and the retarded separation of photogenerated charge carriers in those developed photocatalysts, photocatalytic CO2 splitting into value-added chemicals has suffered from the poor activity and remained in great challenge for real application. Herein, hydrothermally synthesized...
Materials Science & Metallurgy
https://sinotechintel.com/paper/biocl-atomic-layers-with-electrons-enriched-active-sites-exposed-for-efficient-photocatalytic-co2-overall-splitting
End of preview. Expand in Data Studio

πŸ”¬ Chinese Materials Science & Metallurgy Open Intelligence Dataset

Platform Total Papers Domain

A curated academic intelligence dataset providing English research briefs, authoritative DOIs, executive summaries, and high-resolution schematics of breakthrough Chinese scientific research in Materials Science, Metallurgy, Advanced Alloys, and Mining Engineering.


🌐 Official Intelligence Portal

Explore the interactive database, full translations, and executive briefings: πŸ‘‰ SinoTechIntel Academic Intelligence Portal (sinotechintel.com)


πŸ“Š Dataset Structure

The dataset contains 360 indexed scientific papers with the following fields:

  • id: Unique article index
  • title: English academic paper title
  • doi: Digital Object Identifier
  • authors: Research authors and affiliations
  • abstract: Executive abstract and scientific findings
  • category: Research classification
  • intelligence_url: Direct canonical URL to the full intelligence briefing on SinoTechIntel

πŸ“š Sample Data Preview

# Paper Title DOI Read Full Intelligence
1 Design of a novel discrete dual-switching tracking differentiator 10.1007/s11771-025-5992-5 Read on SinoTechIntel
2 Insights into the anisotropy in hydroxamic acid adsorption on different exposed crystal surfaces of malachite from first-principle calculations 10.1007/s11771-025-5991-6 Read on SinoTechIntel
3 Cryogenic forging effects and mechanisms on surface coarse grain microstructure in H-shaped 7050 aluminum forgings 10.1007/s11771-025-5982-7 Read on SinoTechIntel
4 Arsenic removal in copper electrolyte: A review and future prospects 10.1007/s11771-025-5977-4 Read on SinoTechIntel
5 Energy dissipation characteristics of sandstone under triaxial extension with different confining pressures 10.1007/s11771-025-5974-7 Read on SinoTechIntel
6 Nitric acid oxidation treatment promoting microwave absorption performance of carbonized melamine foam 10.1007/s11771-025-5972-9 Read on SinoTechIntel
7 Dynamic mechanical properties and constitutive model of red sandstone under different loading rates and high temperatures 10.1007/s11771-025-5967-6 Read on SinoTechIntel
8 Biomass-derived N-doped porous carbon supported single Fe atoms as low-cost and high-performance electrocatalysts for oxygen reduction reaction 10.1007/s11771-025-5954-y Read on SinoTechIntel
9 Co-enhancement of doped N and oxygen vacancies on the photocatalytic performance of ceria: Mechanism and influence of crystal faces 10.1007/s11771-025-5990-7 Read on SinoTechIntel
10 Dynamic instantaneous dissolution of the precipitates in aged Mg-Zn-Zr alloy at high strain rate 10.1007/s11771-025-5983-6 Read on SinoTechIntel
11 Green and efficient mineral phase transformation of saprolitic nickel laterite ore through fluidized pre-heating and hydrogen-based pre-reduction processes 10.1007/s11771-025-5989-0 Read on SinoTechIntel
12 Undrained mechanical behavior of unsaturated completely weathered granite: Experimental investigation and constitutive modeling 10.1007/s11771-025-5986-3 Read on SinoTechIntel
13 Effect of pre-heat treatment and subsequent ECAP-CU on microstructure and corrosion behavior of 7075 Al alloy fasteners 10.1007/s11771-025-5987-2 Read on SinoTechIntel
14 Optimized joint repair effects on damage evolution and arching mechanism of CRTS II slab track under extreme thermal conditions 10.1007/s11771-025-5988-1 Read on SinoTechIntel
15 Rapid removal of Cr(VI) from aqueous solution by novel sepiolite/Fe3O4/nZVI nanocomposite: Material characterizations, enhanced performance in Cr(VI) removal and mechanism 10.1007/s11771-025-5985-4 Read on SinoTechIntel
16 Mechanical response and impact tendency index correction of gangue-coal combined structure 10.1007/s11771-025-5984-5 Read on SinoTechIntel
17 In situ fabrication of hierarchical NiX@CNT: An efficient bifunctional electrocatalyst for water splitting 10.1007/s11771-025-5981-8 Read on SinoTechIntel
18 Flotation separation performance and mechanism of sphalerite from pyrite by Fe³⁺-Cu²⁺-BX process 10.1007/s11771-025-5980-9 Read on SinoTechIntel
19 Hydration mechanism and microstructure characteristics of modified magnesium slag alkali-activated coal-fired slag based cementitious materials 10.1007/s11771-025-5973-8 Read on SinoTechIntel
20 Anisotropy of rapidly solidified 2195 alloy rolled sheets: Effect of pre-thermal treatment prior to rolling and aging treatment 10.1007/s11771-025-5979-2 Read on SinoTechIntel

🀝 Citation

@dataset{sinotechintel_dataset_2026,
  author = {SinoTechIntel Research},
  title = {Chinese Materials Science & Metallurgy Open Intelligence Dataset},
  year = {2026},
  publisher = {Hugging Face},
  howpublished = {\url{https://sinotechintel.com}}
}
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