2026年5月15日,李晗君同学顺利通过博士学位论文答辩,其博士论文的题目是“贵金属基高熵合金气凝胶的可控制备及其电催化性能研究”。李晗君在攻读博士学位期间所发表的部分代表作如下:
1. Hanjun Li, Honggang Huang, Yao Chen, Feili Lai, Hui Fu, Longsheng Zhang, Nan Zhang*, Shuxing Bai*, Tianxi Liu*, High-entropy alloy aerogels: a new platform for carbon dioxide reduction. Advanced Materials, 2023, 35, 2209242.
2. Hanjun Li, Zhen Huang, Yimin Wang, Guangtong Hai*, Wei-Hsiang Huang*, Chun-Chi Chang, Min-Hsin Yeh, Feili Lai, Nan Zhang*, Tianxi Liu*, High-entropy metallene aerogels: a new balancer for H2 production and consumption in nitrate reduction reaction. Angewandte Chemie International Edition, 2025, 64, e202505156.
3. Hanjun Li, Fulin Yang*, Guanghua Wang*, Liheng Guan, Feili Lai, Nan Zhang*, Tianxi Liu*, Highly distorted high-entropy alloy aerogels for high-efficiency hydrogen oxidation reaction. ACS Nano, 2025, 19, 14434–14444.
4. Hanjun Li, Liheng Guan, Meng Xu, Danping Chen, Guangtong Hai*, Zhenyu Wang, Nan Zhang*, Tianxi Liu*, Electron redistribution at crystalline/amorphous interface in Ag@CuOx nanowire aerogels enhances nitrate electroreduction. Nano Materials Science, 2026. https://doi.org/10.1016/j.nanoms.2026.01.003.
5. Hanjun Li, Honggang Huang, Wenshuai Huang, Xu Zhang, Guangtong Hai, Feili Lai, Ting Zhu, Shuxing Bai, Nan Zhang*, Tianxi Liu*, Interfacial accumulation and stability enhancement effects triggered by built-in electric field of SnO2/LaOCl nanofibers boost carbon dioxide electroreduction. Small, 2024, 20, 2402654.
6. Hanjun Li, Guangtong Hai*, Zhenyu Wang, Xin Chen, Shuxing Bai, Nan Zhang*, Tianxi Liu*, In situ construction of a crystalline/amorphous interface in SnO2/Bi nanobelts for efficient CO2 electroreduction. Journal of Materials Chemistry A, 2025, 13, 14786–14795.
7. Hanjun Li, Nan Zhang*, Shuxing Bai, Longsheng Zhang, Feili Lai, Yao Chen, Xiangmiao Zhu, Tianxi Liu*, Strain-regulated Pd/Cu core/shell icosahedra for tunable syngas electrosynthesis from CO2. Chemistry of Materials, 2022, 34, 7995–8003.
8. Hanjun Li, Yao Chen, Honggang Huang, Zijing Cheng, Shuxing Bai, Feili Lai, Nan Zhang*, Tianxi Liu*, Amorphous ZnSnOx hollow spheres enable highly efficient CO2 reduction. ChemSusChem, 2024, 17, e202301694.