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    赵晓
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    ( 教授 )

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    的个人主页 https://teachers.jlu.edu.cn/Zhao_Group/zh_CN/index.htm

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科学研究 当前位置: 吉林大学_赵晓教授 >> 科学研究
  • 个人简介  

          吉林大学“唐敖庆学者”领军教授A岗,国家级青年人才,长白山特聘青年拔尖人才,博士毕业于中科院长春应化所,先后在新加坡国立大学,日本电气通信大学和SPring-8从事科研工作,2021年加入吉林大学,开展氢能和燃料电池的工作,研究聚焦“催化中心的原位动态追踪与解析”和“高效膜电极的设计与制备”。研究特色是在催化电极上获取催化性能、催化中心和中间体的原位动态演变信息,并结合理论光谱模拟计算,建立构效关系,进而指导催化剂和膜电极的可控制备。


    研究方向                                                                  

    1. 氢能与燃料电池电催化材料 2. 高效膜电极的制备与表征, 包括燃料电池和电解水器件 3. 电催化与电合成 4. 金属-空气电池


    研究论文

    2026年


    6. Steering pH-Dependent Pathways on Unconventional Phase Alloy Nanostructures for Universal Nitrate Electroreduction. Fengkun Hao#, Liang Guo#, Yunhao Wang#, Xinyi Li#, Jingwen Zhou, Fu Liu, Juan Wang, Peng Chen, Yuecheng Xiong, Chaohui Wang, Yangbo Ma, Xiang Meng, Guozhi Wang, Qingbo Wa, Mingzheng Shao, Xintao Ma, Yunming Zhong, Miao Wang, Fangren Qian, Xiuyun Zhang, Chenliang Ye, Chongyi Ling, Xiao Zhao* & Zhanxi Fan*, Advanced Materials, (2026), 38, e74915.

    5. Integrated Nanoporous Gold-based Gas Diffusion Electrodes Enabled by Molecular-Level Micelle Engineering for Efficient CO2 Electroreduction. Longlong Fan#, Chengming Wang#, Xinyi Li#, Yang Liu, Aiping Wu, Xiao Zhao*, Cuiling Li* and Lei Jiang, CCS Chemistry, (2026), doi.org/10.31635/ccschem.026.202607843.

    4. Heterophase fcc-hcp-fcc High-Entropy Alloy Nanomaterials with Tailored Electron Divergence for SelectiveAmmonia Electrosynthesis. Meng Xiang#, Sun Mingzi#, Li Xinyi#, Chen Jing, Wang Yunhao, Hao Fengkun, Liu Fu, Zhao Quanlin, Guo Liang, Xiong Yuecheng,Wang Juan, Wang Guozhi, Shao Mingzheng, Wang Chaohui, Huang Xiaoging, Zhang Qinghua*, Zhao Xiao*, Huang Bolong*, Fan Zhanxi*, Advanced Materials, (2026), 38, e21096.

    3. Multi-function core-shell nanoparticles outperform single-phase counterparts for efficient single-atom catalysis. Hong Huang#, Xinyi Li#,Xiaochun Xu#, Xiaoyuan Sun, Jizheng Feng, Zhongfeng Wang, Mingming Wang, Shunlong Liu, Xiao Zhao*, Science Bulletin, (2026),71, 4173-4182.

    2. Coordination-Induced Reconstruction Optimizes Spatial Arrangements of Heterogeneous Yet Cooperative Sites to Boost Oxygen Reduction Kinetics.
    Xiaoyuan Sun#, Hong Huang#, Xinyi Li#, Jizheng Feng, Shunlong Liu, Jingming Gao, Yanjiao Chen, Xiao Zhao*, Advanced Materials, (2026), 38, e73499.

    1. Molecular level combination of coordination and interfacial regulations via functional ligands for industrial AEM water electrolysis. Xinyi Li#,Jiyu Liu#, Zhongfeng Wang, Hong Huang, Xiaoyuan Sun, Wenting Lu, Xiao Zhao*, Scinece Advances, (2026), 12, eaea8247.  


    2025年

    6. Unconventional High-Entropy Oxide with Inner Metallic Coordination and Surface Medium-Entropy Metal-OH for Durable PEM Water Electrolysis at 2 A cm−2. Mingming Wang#, Zhongfeng Wang#, Xinyi Li#, Xiaoyuan Sun, Hong Huang, Hailong Chen, Hao Luo, Lu Li, Xiaoxin Zou, Xiao Zhao* Adv. Mater. (2025): e11461.  

    5. Interfacial Trapping of Reactive Water and Concurrent Stabilization of Lattice Oxygen for Efficient Acidic Oxygen Evolution. Zhongfeng Wang, Mingming Wang, Xinyi Li, Hong Huang, Xiaoyuan Sun, Jizheng Feng, Shunlong Liu, Hao Luo, Lu Li, Xiaoxin Zou and Xiao Zhao*, Nano Letters 2025 25 (35), 13267-13275. 

    4. Nonmetal–Metal Strategy to Reduce Ru–O Covalency while Promoting Local Reactive Water Concentration for Efficient Acidic Oxygen Evolution. Mingming Wang#, Xinyi Li#, Zhongfeng Wang, Hong Huang, Xiaoyuan Sun, Hailong Chen, Hao Luo, Lu Li, Xiaoxin Zou and Xiao Zhao*. Nano Letters 2025 25 (31), 12009-12018. 


    3. Designed Catalytic Templates for the Universal Synthesis of Metal/Nitrogen-Doped Carbon Nanotubes with Hierarchical Architectures for Enhanced Oxygen Reduction, Hong Huang, Xiaoyuan Sun, Mingming Wang, Jizheng Feng,Xinyi Li, Zhongfeng Wang, Yanjiao Chen, Wenting Lu, and Xiao Zhao*, ChemCatChem 2025, e202402145.  

    2. From Single-atom to Bi-atom and Ordered Multi-atom: Not Just a Number Changing for Electrocatalysis, Wenting Lu, and Xiao Zhao*, Chem. Res. Chin. Univ. 41, 432–446 (2025). 

    1. Dopant-Tuned Restructuring Kinetic for the Formation of Heterophase-Confined Metal-Nonmetal Diatomic Sites for Efficient Oxygen Evolution Reaction, Xinyi Li, Feiyan Liu, Wenting Lu, Huafeng Fan, Meiling Xiao, Xiaoqiang Cui, Lu Li, Xiaoxin Zou, Weitao Zheng, Xiao Zhao*, ACS Catalysis 2025 15 (2), 748-758. 

    2024年

    4. Collective Effect in a Multicomponent Ensemble CombiningSingle Atoms and Nanoparticles for Efficient and Durable Oxygen Reduction, Xiaochun Xu#, Xinyi Li#, Wenting Lu#, Xiaoyuan Sun, Hong Huang, Xiaoqiang Cui, Lu Li, Xiaoxin Zou, Weitao Zheng,Xiao Zhao*, Angew. Chem. Int. Ed. 2024, e202400765.  (A Highly Cited Paper).

    3. Synergism between metal single-atom sites and S-vacant two-dimensional nanosheets for efficient hydrogen evolution uncovered by density functional theory and machine learning, Xinyi Li , Dongxu Jiao , Jingxiang Zhao* and  Xiao Zhao*, Inorg. Chem. Front., 2024,11, 7008-7017.

    2. Fine Engineering of d‑Orbital Vacancies of ZnN4 via High-Shell Metal and Nonmetal Single-Atoms for Efficient and Poisoning-Resistant ORR, Xiaoyuan Sun#, Xinyi Li#, Hong Huang, Wenting Lu, Xiaochun Xu, Xiaoqiang Cui, Lu Li, Xiaoxin Zou, Weitao Zheng, and Xiao Zhao*, Nano Letters 2024 24 (46), 14602-14609.

    1. A Comprehensive Descriptor for Understanding High-Shell Heteroatom-Tuned Oxygen Reduction Reaction Activity on Diatomic FeCoN6 Sites, Xinyi Li , Dongxu Jiao , and Xiao Zhao*, Renewables. 2024, 2, 242-249. 

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