傅佳敏

  • 职务:副教授
  • 邮箱:jmfu226@eitech.edu.cn

背景介绍

宁波东方理工大学工学部副教授、博士生导师国家海外高层次青年人才2016年获得中南大学学士学位,2019年获得中国科学院大学硕士学位,2023年获得加拿大西安大略大学博士学位,随后留组开展两年多博士后研究。研究领域为新型固态储能技术,包括新型电极材料开发、固态电解质开发、AI+新能源等方向。近年来在固态电池卤化物固态电解质、卤化物/有机正极设计等方面发表了一系列原创性成果。以第一作者身份在Nature, Nat. Chem., Nat. Common., Adv. Mater., J. Am. Chem. Soc., Energy Environ. Sci.等期刊发表论文9篇。

研究领域

主要研究领域是新型固态储能技术及应用,包括:

1. 面向全固态电池的新型固态电解质材料及其界面调控机制研究;

2. 高安全性新型正极材料的设计、合成与电化学性能优化;

3. 电化学反应过程中的原位/同步辐射表征方法与机制解析。

教育背景

2019-2023: 博士(化学),加拿大西安大略大学

2016-2019:硕士(材料物理化学),中国科学院大学

2012-2016:学士(新能源材料与器件),中南大学

工作经历

2023-2025: 加拿大西安大略大学,博士后

学术兼职

2025-至今:Nano-Micro Letters 青年编委

获奖情况及荣誉

2025国家海外高层次人才

代表性论著

总体情况

50余篇 SCI论文;引用3000余次,H-index 29。

Google Scholar:

https://scholar.google.com/citations?user=r55c8BIAAAAJ&hl=en

 10篇代表作(*表示通讯作者)

· Fu, J. , Wang, C., Wang, S., Reid, J. W., Liang, J., Luo, J., Kim, J. T., Zhao, Y., Yang, X., Zhao, F., Li, W., Fu, B., Lin, X., Hu, Y., Su, H., Hao, X., Gao, Y., Zhang, S., Wang, Z., Liu, J., Abdolvand, H., Sham, T.-K. *, Mo, Y.* & Sun, X.* (2025). A Cost-Effective All-in-One Halide Material for All-Solid-State Batteries. Nature, 643, 111–118

· Fu, J., Su H., Luo J.*, Li X., Liang J., Wang C., Kim J. T., Hu Y., Zhao F., Zhang S., Duan H., Hao X., Li W., Peng J., Liu J., Wang S., Sham T.-K.* & Sun X.* (2025). Chemical Bond Covalency in Superionic Halide Solid-State Electrolytes. Angewandte Chemie-International Edition 64, e202508835.

· Fu, J. , Wang, S., Wu, D., Luo, J., Wang, C., Liang, J., Lin, X., Hu, Y., Zhang, S., Zhao, F., Li, W., Duan, H., Zhao, Y., Gu, M.*, Sham, T.-K.*, Mo, Y.* & Sun X.* (2024). Halide Heterogeneous Structure Boosting Ionic Diffusion and High‐Voltage Stability of Sodium Superionic Conductors. Advanced Materials, 36(3), 2308012.

· Fu, J., Wang, S., Liang, J., Alahakoon, S. H., Wu, D., Luo, J., Duan, H., Zhang, S., Zhao, F., Li, W., Li, M., Hao, X., Li, X., Chen, J., Chen, N., King, G., Chang, L.-Y., Li, R., Huang, Y., Gu, M., Sham, T.-K.*, Mo, Y.* & Sun, X.* (2023). Superionic Conducting Halide Frameworks Enabled by Interface-Bonded Halides. Journal of the American Chemical Society, 145(4), 2183-2194.

· Fu, J., Yu, P., Zhang, N., Ren, G., Zheng, S., Huang, W., Long, X., Li, H. & Liu, X*. (2019). In Situ Formation of a Bifunctional Interlayer Enabled by a Conversion Reaction to Initiatively Prevent Lithium Dendrites in a Garnet Solid Electrolyte. Energy & Environmental Science, 12(4), 1404-1412.

· Wang, S., Fu, J., Liu, Y., Saravanan, R. S., Luo, J., Deng, S., Sham, T.-K., Sun, X.* & Mo, Y. * (2023). Design Principles for Sodium Superionic Conductors. Nature Communications, 14(1), 7615.

· Zhang, J., Fu, J., Lu, P., Hu, G., Xia, S., Zhang, S., Wang, Z., Zhou, Z., Yan, W., Xia, W., Wang, C.* & Sun, X.* (2025). Challenges and Strategies of Low-Pressure All-Solid-State Batteries. Advanced Materials, 37(6), 2413499.

· Su, H. , Fu, J. , Liu, S., Zhong, Y., Kuang, J., Wang, M., Wang, X., Sun, X.* & Tu, J.* (2025). Metal-Incorporated Interphase Formed between Inorganic Solid Electrolyte and Li Metal: Beneficial or Detrimental? EES Batteries. 1, 242-249.

· Hu, Y. , Su, H., Fu, J. , Luo, J., Zhao, F., Li, W., Kim, J. T., Yu, Q., Deng, S., Liu, Y., Yuan, Y., Gan, Y., Hao, X., Chen, N., Shakouri, M., Jiang, M., Pang, T., Zhang, N., Li, X., Zhao, Y., Tu, J.*, Wang, C.* & Sun, X.* (2025). Solid Solvation Structure Design Improves All-Solid-State Organic Batteries. Nature Chemistry. 17, 1313–1322.

· Gao, Y., Fu, J., Hu, Y., Zhao, F., Li, W., Deng, S., Sun, Y., Hao, X., Ma, J., Lin, X., Wang, C., Li, R. & Sun, X.* (2024). Reviving Cost-Effective Organic Cathodes in Halide-Based All-Solid-State Lithium Batteries. Angewandte Chemie International Edition, 63(30), e202403331.