- Name (Simplified Chinese):余东方
- Name (Pinyin):yudongfang
- E-Mail:
- School/Department:人工智能创新学院
- Education Level:With Certificate of Graduation for Doctorate Study
- Business Address:合肥工业大学翡翠湖校区人工智能学院(物理学院大楼)906室
- Gender:Male
- Degree:Doctoral degree
- Status:Employed
- Alma Mater:浙江大学
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余东方,特任副教授。2026年6月获浙江大学博士学位,博士期间于西湖大学工学院朱一舟课题组从事AI for Science交叉研究。学科背景覆盖应用化学(本科)、软件工程(硕士)及材料科学与工程(博士),形成了AI算法开发、理论模拟计算、材料表征分析与湿实验验证相结合的完整研究闭环。目前,在AI与材料科学领域已发表论文20余篇,其中以第一作者/通讯作者身份发表6篇,包括Nature Communications、NPJ Computational Materials、Nano Energy、ACS Nano等国际知名期刊,谷歌学术总引用逾1500次,多篇论文入选ESI高被引论文。作为校方负责人主持中国兵器工业集团校企联合课题1项。
课题组现诚邀2026/2027年9月入学的推免生及考研学生提前联系。对AI for Science方向感兴趣、希望参与科研训练(如大创、毕业设计、推免准备)的同学,请将简历发送至 yudongfang@hfut.edu.cn。课题组氛围融洽,无论是在学术深造还是实习就业方面,均将给予充分支持。
部分代表性成果列表如下:
[1] D. F. Yu, Z. W. Zhu, F. C. Leng, Y. Z Zhu*. Equivariant Diffusion Solution for Inorganic Crystal Structure Determination from Powder X-ray Diffraction Data . Nature Communications ( 中科院1区, IF 15.7). 2025,17,3274
[2] D. F. Yu, , S. Griesemer, C. Wolverton, Y. Z Zhu*. Automated Phase Mapping of High Throughput X-ray Diffraction Data Encoded with Domain-Specific Materials Science Knowledge. npj Computational Materials (中科院1区, IF 11.9,延伸宁德时代横向1项). 2025, 11, 354.
[3] D. F. Yu, Z.H. Liu, J. M. Zhang, S. Li*, et al.. Enhanced catalytic performance by multi-field coupling in KNbO3 nanostructures: Piezo-photocatalytic and ferro-photoelectrochemical effects. Nano energy (IF 16.8,ESI高被引,被引370余次).2019, 01, 695-705.
[4] D. F. Yu, F. Teng*, L. Q. Yang, et al.. A Initiative Intercalating Strategy for Conversion of Bi2O3 to Bi2O2[BO2(OH)] and Double Internal Electric Field-Dependent Photoelectrochemistry Properties. ChemistrySelect, 2016, 1, 4209-4217.
[5] G. W. Zhang*, D. Y. Li*, D. F. Yu*(共同一作), et al.. Stabilizing Halide Electrolytes against Lithium Metal with a Self-Limiting Layer for All-Solid-State Lithium Metal Batteries[J]. ACS nano (中科院1区, IF 16.0), 2025, 19, 15, 14839–14847.
[6] S. Li*, Z.C. Zhao*, D. F. Yu*(共同一作), et al.. Few-Layer Transition Metal Dichalcogenides (MoS2, WS2, and WSe2) for Water Splitting and Degradation of Organic Pollutants: Understanding the Piezocatalytic Effect. Nano energy (IF 16.8).2019,66, 083-104.
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