近三年通讯作者共发表25篇,下列为代表性论文: Guo Huafei*, Thermally activated chain reconfiguration enabled by selenium incorporation for efficient carrier transport in antimony sulfide thin-film solar cells, JOURNAL OF MATERIALS CHEMISTRY A,2026, 14(14), 8132-8142 Guo Huafei, Active selenium-driven confined crystallization and carrier dynamics in high-efficiency ultrathin semi-transparent Sb2Se3 solar cells, CHEMICAL SCIENCE, 2026, 17(9), 4753-4764 DongXu , Guo Huafei*, Heterojunction interface cation substitution to enhance the performance of antimony selenide thin-film solar cells,ENERGY MATERIALS, 2026, 12, 600026 Jiang Sai, Guo Huafei*, Robust Sb2Se3/Hafnium Zirconium Oxide Synaptic Memristors with Dynamic Learning Rate Strategy for Generalizable Neuromorphic Networks, ADVANCED FUNCTIONAL MATERIALS, 2025, 0, e27371 Shen Bangzhi, Guo Huafei*, Heterojunction Interface Anomalous High-Energy Level Insertion Modulating Carrier Dynamics in High-Efficiency Antimony Selenide Thin-Film Solar Cells, ADVANCED FUNCTIONAL MATERIALS, 2025, 35, 43 Geng Kangjun, Guo Huafei*, Dual-Ion Directed Synergistic Doping for Regulating Film Crystallization and Carrier Dynamics in High-Efficiency Antimony Selenosulfide Thin-Film Solar Cells, SMALL, 2025, 21, 29 Zhang Tingyu, Guo Huafei*, Regulation of the Charge Carrier Dynamics in Antimony Selenide Thin-Film Solar Cells Based on the Effective Diffusion of Ions at the Heterojunction Interface, ADVANCED FUNCTIONAL MATERIALS, 2025, 35, 13 Yang Yushen, Guo Huafei*, Optimizing Crystal Orientation and Defect Mitigation in Antimony Selenide Thin-Film Solar Cells through Buffer Layer Energy Band Adjustment, SMALL, 2024, 20, 44 Ni Xiaomeng, Guo Huafei*, Performance enhancement of Sb2(S,Se)3 solar cells through neodymium ion flow doping,CHEMICAL ENGINEERING JOURNAL, 2024, 490, 151574 Guo Huafei*, Defect control for high efficiency antimony selenosulfide solar cells by interface Engineering of buried monoatomic aluminum oxide layer, CHEMICAL ENGINEERING JOURNAL, 2024, 487, 150499 .Guo Huafei, Enhancement in the Efficiency of Sb2Se3 Solar Cells by Triple Function of Lithium Hydroxide Modified at the Back Contact Interface, ADVANCED SCIENCE, 2023, 10, 31
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