
[LABEL]
姓名:余兴
职称:副研究员
联系方式:YX02SHU14@shu.edu.cn
[LABEL END]
[SECTION]
标题:个人简介
一直致力于将冶金技术与新材料制备相结合,形成有交叉特色的研究方向。具体包括强磁场下的电化学/化学创制与改性、低温/高温电化学冶金、电催化、高温合金熔炼与激光修复等。主持国家自然科学基金青年项目、上海市自然科学基金面上项目、博后面上和上海市超级博士后计划等科研项目。以第一/通讯作者在Angewandte Chemie International Edition、Energy & Environmental Science、Advanced Functional Materials、small、Journal of Materials Science & Technology等上发表SCI论文30余篇,封面论文3篇,h因子22。申请发明专利10余项,授权4项。[SECTION END]
[SECTION]
标题:代表性论文
[1] Tian Feng, Wang Fei, Nie Wei, Zhang Xueqiang, Xia Xuewen, Chang Linhui, Pang Zhongya,* Yu Xing,* Li Guangshi, Hu Shen, Xu Qian, Hsu Hsien-Yi, Zhao Yufeng, Ji Li, Lu Xionggang, Zou Xingli.* Tailoring Oxygen-Depleted and Unitary Ti3C2Tx Surface Terminals by Molten Salt Electrochemical Etching Enables Dendrite-Free Stable Zn Metal Anode [J]. Angewandte Chemie International Edition 2024, 63(36): e202408996.
[2] Tian Feng,# Pang Zhongya,# Yu Xing,# Jiang Zhenqiang, Wang Fei, Xu Jianlin, Li Guangshi, Hu Shen, Xu Qian, Hsu Hsien-Yi, Zhao Yufeng, Ji Li, Lu Xionggang, Zou Xingli.* Polyanion Electrointercalation Enables Termination-Tailored Oligolayer Ti3C2Tx MXene Synthesis in Alkali Chloroaluminate Melt [J]. Angewandte Chemie International Edition 2025, 64(45): e202514594.
[3] Zhang Weiwei, He Xiran, Pan Peiyao, Wang Jiantao, Liu Lu, Hou Long, Fan Xue, Lu Xionggang, Yu Xing,* Li Xi.* Cr-enhanced selective dealloying and sequential electrochemical reconstruction to tailor NiFe-based integrated catalysts for industrial-level water oxidation [J]. Energy & Environmental Science 2025, 18(18): 8697-707.
[4] Zhang Weiwei, He Xiran, Pan Peiyao, Wang Jiantao, Liu Lu, Zhang Shujian, Fan Xue, Hou Long, Lu Xionggang, Yu Xing,* Li Xi.* Strong Magnetic Field‐Enhanced Corrosion Engineering Unlocks Integrated Amorphous/Crystalline Bifunctional Electrodes for Stable High‐Current Water Electrolysis [J]. Advanced Functional Materials 2025, 36(7).
[5] Zhang Weiwei, lv Qingyun, Hou Long, Wang Jiantao, Long Zhipeng, Lu Xionggang, Yu Xing,* Li Xi.* Facile top-down fabrication of integrated amorphous NiFe-based electrocatalytic electrodes for high current and long-life oxygen evolution [J]. Journal of Materials Science & Technology 2025, 211: 11-21.
[SECTION END]