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2025年-研究论文

021、Lehao Liu, Tianrong Yang, Rubing Xu, et al. Hydrogen bond interaction enhanced polymer electrolytes through functionalized nanosheets for high-stability lithium metal batteries[J]. Applied Surface Science, 2026, 717, 164825.||PDF

020、Luyao Yan, Hao Huang, Peng Cui, et al. Moisture-Stable Intermediate Phase Manipulation for Efficient Perovskite Solar Cells Fabricated in Ambient Air[J]. ACS Energy Letters, 2025, 10, 5156.||PDF

019、Dongmei Zhang, Dingrong Long, Jiangping Zhang, et al. Ultrathin composite electrolyte with multifunctional skeleton for solid-state lithium metal batteries[J]. Journal of Power Sources, 2025, 659, 238312.||PDF

018、Haifang Li, Pengkun Zhu, Zhiyu Zhang, et al. Additive-Free Crystallization Modulation for Efficient Perovskite Solar Cells by a Transverse Pulsed Electric Field[J]. Small Methods, 2025, e01431.||PDF

017、Donglin Jia, Jiaxin Li, Kefan Zhu, et al. Enriching conductive capping by alkaline treatment of perovskite quantum dots towards certified 18.3%-efficient solar cels[J]. Nature Communications, 2025, 16, 8612.||PDF

016、Lehao Liu, Tianrong Yang, Rongmin Zhou, et al. Comprehensively-upgraded polymer electrolytes with lithium ion-conductive nanosheets towards stable lithium metal batteries[J]. Chemical Engineering Journal, 2025, 521, 166963.||PDF

015、Hao Huang, Zhineng Lan, Yingying Yang, et al. Controllable electrolysis doping of organic semiconductors for stable perovskite solar cells[J]. Joule, 2025, 9, 102106.||PDF

014、Shujie Qu, Yiyi Li, Hao Huang, et al. Unveiling the Mutual Promotion Mechanism of Adjacent Vacancy Defects Enables High-Performance Perovskite Solar Cells[J]. Advanced Materials, 2025, 37, 2508643.||PDF

013、Jianan Gu, Yuanfu Ren, Zhipeng Wu, et al. Advancing Next-Gen Energy Storage with Single-Atom Materials[J]. Advanced Materials, 2025, 2505009.||PDF

012、Guanxiong Peng, Xianxiao Fan, Wendi Zhang, et al. A high-wettability composite lithium anode for garnet-type solid-state electrolyte and copper current collector[J]. Journal of Alloys and Compounds, 2025, 1026, 180411.||PDF

011、Lehao Liu, Rubing Xu, Jiaxin Tu, et al. Thin Polymer Electrolytes with 3D Nanofiber Skeletons Enabling High-Performance Solid-State Lithium Metal Batteries[J]. The Journal of Physical Chemistry C, 2025, 129, 6138-6147.||PDF

010、Hengwei Qiu, Yongqiang Ji, Wenfan Hu, et al. Janus CsPbBr3−AgBiS2 Heteronanocrystals for High-Efficiency Photodetectors[J]. Nano Letters, 2025, 25, 4393-4400.||PDF

009、Yingfeng Li, Zixuan Wang, Peici Yu, et al. Enhanced Performance of Fabricated Iodine-Rich Perovskite Solar Cells via Reverse-Biasing[J]. Solar RRL, 2025, 0:e2500066.||PDF

008、Danxia Wu, Huilin Yan, Xing Zhao, et al. Enhanced SnO2 Electron Transport Layer by Eu3+ for Efficient and Stable Perovskite Solar Cells[J]. Sustainable Energy & Fuels, 2025, 10.1039/D5SE00128E.||PDF

007、Xiaojing Yin, Guangran Di, Ye Liu, et al. An energy-saving photo-rechargeable lithium-ion battery based on lead-free hybrid perovskite[J]. Science China Materials, 2025, 68, 1091-1099.||PDF

006、Hao Huang, Yingying Yang, Benyu Liu, et al. Regulating Bifacial Surface Potential of Perovskite Film Enables Efficient Perovskite Solar Cells Universal for Different Charge Transport Layers[J]. Small, 2025, 2412129.||PDF

005、Shujie Qu, Fu Yang, Hao Huang, et al. Redox mediator-modified self-assembled monolayer stabilizes buried interface in efficient inverted perovskite solar cells[J]. Energy & Environmental Science, 2025, 10.1039/D4EE05319B.||PDF

004、Lehao Liu, Jinshan Mo, Rongmin Zhou, et al. Ultrathin solid composite electrolytes for long-life lithium metal batteries[J]. Journal of Energy Storage, 2025, 114, 115777.||PDF

003、Changhua Mi, Xin Sun, Xiaojing Yin, et al. g-C3N4 modified MoS2 photoelectrodes for stable photo-assisted zinc-ion capacitors[J]. Science China Materials, 2025, 10.1007/s40843-024-3239-y.||PDF

002、Bing Jiang, Gang Zou, Bi Luo, et al. Enhanced electrochemical performance of lithium-rich layered oxide materials: Exploring advanced coating strategies[J]. Chinese Chemical Letters, 2025, 36, 109801.||PDF

001、Min Wang, Liang Li, Jinhui Wang, et al. Accelerating direct formation of α-FAPbl3 by dual-additives synergism for inverted perovskite solar cells with efficiency exceeding 26 %[J]. Chemical Engineering Journal, 2025, 505, 159056.||PDF

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