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Professor
Supervisor of Doctorate Candidates
Supervisor of Master's Candidates
Gender:Male
Status:Employed
Department:School of Materials Science and Engineering
Education Level:Postgraduate (Doctoral)
Degree:Doctoral Degree in Engineering
Discipline:Material Science
Profile
许恒辉,教授/博导、教育部青年长江学者、湖北省百人计划、“武汉英才”产业领军人才入选者。2015 年获得华中科技大学博士学位后,在美国得克萨斯大学奥斯汀分校John B. Goodenough 院士(2019诺贝尔化学奖得主)课题组从事储能材料与器件的基础与应用研究。在固态锂电池领域取得了一系列学术成果:已发表 SCI 论文100 余篇,论文总被引万余次,其中近五年,以第一/通讯作者身份发表了 Proc. Natl. Acad. Sci.、Nat. Commun.、Energy Environ. Sci.、Adv. Mater.、Angew. Chem. Int. Ed.等文章。担任 SCI 期刊Interdisciplinary Materials 学术编辑、Science Bulletin、SusMat、 和Rare Metals 青年编委,Nat. Commun., Joule 和 Adv. Mater.等期刊审稿人。
主持科技部重点研发计划课题,国家自然科学基金重点、面上、青年项目、湖北省重点研发计划项目和东风汽车等企业横向项目。申请发明专利 20 项,获授权中国/美国发明专利10项。
欢迎关注动力与储能电池实验室网站,了解更多信息 http://sysdoing.mat.hust.edu.cn/yjtd.htm。
代表性论文列表:
1. Ion bridging enables high-voltage polyether electrolytes for quasi-solid-state batteries. T Hou, D Wang, B Jiang, Y Liu, J Kong, Y He, Y Huang*, H. Xu*. Nat. Commun. 2025, 16 1, 962.
2. Regenerative Artificial Solid Electrolyte Interphase via Dynamic Cross-Linking for Stable Lithium Metal Anodes. R. Dou, R. Song, K. Chi, J. Lei, M. Ge, W. He, Y. Huang, H. Xu*. Angew. Chem. Int. Ed., 2026, https://doi.org/10.1002/anie.7884848.
3.Self-healing supramolecular cathode binder additive with dynamic bonds for durable high-voltage solid-state lithium batteries. Y. Wei, Y. Zhang, H. Wang, W. Wang, Y. Zhang, T. Li, Q. Kong, J. Yang, R. Dou, H. Liu*, Z. Li, Y. Ren, H. He, H. Xu*, Y.Huang*. eScience 2026, 100555.
4. Smart batteries: materials, monitoring, and artificial intelligence. N Zhang, T Hou, G Han, Y Yu*, H. Xu*, Y Huang*. Chem. Soc. Rev., 2025, 54, 10006-10139.
5. Competitive ion coordination in gel polymer electrolytes enables decoupling of mechanical strength and ionic conductivity. Haonan Wang, Jiaojiao Yang, Xinyan Xu, Jia Geng, Xing Lin, Henghui Xu*, Yunhui Huang*. Adv. Mater., 2025, DOI:10.1002/adma.202504625
6. Interfacial self-healing polymer electrolytes for ultralong-life solid-state lithium-sulfur batteries. F. Pei, L. Wu, Y. Zhang, Y. Liao, Q. Kang, Y. Han, H. Zhang, Y. Shen, H. Xu*, Z. Li*, Y. Huang*. Nat. Commun., 2024, 15, 351.
7. Moderate solvation structures of lithium ions for high-voltage lithium metal batteries at− 40°C. Y Wei, H Wang, X Lin, T Wang, Y Cui, Y Huang, J Yang, T Liu, Y Ren, H. Xu*, Y Huang*, Energy Environ. Sci., 2025, 18, 786-798.
8. Air-stable Li2S Cathodes Enabled by an In-Situ-Formed Li+ Conductor for Graphite-Li2S Pouch Cells. X. Qi, X. Jin, H. Xu*, Y. Pan, F. Yang, Z. Zhu, J. Ji, R. Jiang, H. Du, Y. Ji, D. Yang, L. Qie*, and Y. Huang. Adv. Mater. 2024, 36, 2310756.
9. Building Practical High-Voltage Cathode Materials for Lithium-ion Batteries. J. Xiang, Y. Wei, Y. Zhong, Y. Yang, H. Cheng, L. Yuan*, H. Xu*, Y. Huang.* Adv. Mater. 2022, 34, 2200912.
10. H. Xu, J. Shi, Y. Li,* P. Chien, N. Wu, B. Xu, Y. You, Y. Liu, Y. Hu, J. Goodenough.* High-performance All-Solid-State Batteries Enabled by Salt Bonding to Perovskite in Poly(ethylene oxide). PNAS. 2019, 116, 18815.
