人物简介
  • 姓        名:李叶晶
  • 职        务:副教授
  • 电子邮件: [email protected]

科研领域:

(1) 高比能全固态电池关键材料和界面解析

(2) 储能钠离子电池正负极材料和器件开发

(3) 动力锂离子电池关键材料的产业化应用探索

(4) AI辅助电芯材料设计和器件开发


  • 个人简介
  • 成就及业绩
  • 教育经历:

    12013.9-2018.6,中国科学院物理研究所,凝聚态物理,博士,导师:王兆翔研究员

    22009.9-2013.6,中南大学,材料科学与工程,学士

    科研与工作经历:

    12025.3-至今,北京科技大学,云顶集团(中国)唯一官方网站 ,副教授

    22022.4-2024.12,理想汽车,动力电池,固态电池高级工程师

    32020.11-2022.2,美国阿贡国家实验室,博士后,合作导师:Wenquan Lu

    42018.7-2020.11,美国加州大学圣地亚哥分校,博士后,合作导师:Ping Liu

    代表性论著

    (1) Weng Suting ; Zhang Xiao; Yang Gaojing; Zhang Simeng; Ma Bingyun; Liu Qiuyan; Liu Yue; Peng Chengxin; Chen Huixin; Yu Hailong; Fan Xiulin; Cheng Tao; Chen Liquan; Li Yejing*; Wang Zhaoxiang*; Wang Xuefeng*: Temperature-dependent interphase formation and Li+ transport in lithium metal batteries, Nature Communications, 2023, 14(1): 4474.

    (2) Weng Suting; Yang Gaojing; Zhang Simeng; Liu Xiaozhi; Zhang Xiao; Liu Zepeng; Cao Mengyan; Ateş Mehmet Nurullah; Li Yejing*; Chen Liquan; Wang Zhaoxiang*; Wang Xuefeng*: Kinetic Limits of Graphite Anode for Fast-Charging Lithium-Ion Batteries, Nano-Micro Letters, 2023, 15(1): 215.

    (3) Zhang Xiao; Weng Suting; Yang Gaojing; Li Yejing*; Li Hong; Su Dong; Gu Lin; Wang Zhaoxiang*; Wang Xuefeng*; Chen Liquan: Interplay between solid-electrolyte interphase and (in)active LixSi in silicon anode, Cell Reports Physical Science, 2021, 2(12): 100668.

    (4) Weng Suting; Li Yejing*; Wang Xuefeng*: Cryo-EM for Battery Materials and Interfaces: Workflow, Achievements and Perspectives, iScience, 2021, 24(12): 103402.

    (5) Li Yejing; Wang Xuefeng; Zhou Hongyao; Xing Xing; Banerjee Abhik; Holoubek John; Liu Haodong; Meng Ying Shirley; Liu Ping: Thin Solid Electrolyte Layers Enabled by Nanoscopic Polymer Binding, ACS Energy Letters, 2020, 5(3): 955-961.

    (6) Li Yejing; Wang Xuefeng; Gao Yurui; Zhang Qinghua; Tan Guoqiang; Kong Qingyu; Bak Seongmin; Lu Gang; Yang Xiao-Qing; Gu Lin; Lu Jun; Amine Khalil; Wang Zhaoxiang; Chen Liquan: Native Vacancy Enhanced Oxygen Redox Reversibility and Structural Robustness, Advanced Energy Materials, 2018, 9(4): 1803087.

    (7) Xu Shiwei#; Liu Yue#; Li Yejing#; Cao Mengyan; Wu QingLi; Ma Bingyun; Zhang Jiayi; Fang Qiu; Chen Liquan; Wang Zhaoxiang; Cheng Tao; Wang Xuefeng: Degradation Mechanism and Enhanced Stability of Organolithium for Chemical Lithiation, Advanced Energy Materials, n/a(n/a): 2402941.