
研究方向
课题组主要研究方向:以非平衡态纳米热力学理论体系为核心,建立极端合成条件下动态相图指导的亚稳态材料精准调控范式,旨在实现高熵合金/金属间化合物/纳米团簇/单原子等材料的设计开发及其催化机制探索。具体应用领域包括: 1)金属-空气电池催化材料; 2)海水制氢催化材料; 3)纳米酶分析传感催化材料。
代表性论著
查看全部 →- [1].
T. Wang, Y.H. Xia, C.L. Gao, T.Y. Huang, Z.T. Zhao, M. Chen, M.H. Yang, M.J. Cui*, Yu Ding.* Long-Cycling Organic Flow Batteries Enabled by Electronic-Spatial Synergistic Modulation. Sci. Adv. 2026, Accepted.
- [2].
M.J. Cui, Z.C. Tian, Y.Q. Gong, B. Xu, Q.T. Gu, H.J. Li, X.Y. Zhang, M.H. Yang,* P. He,* S.X. Dou, Y. Ding.* Heating and leaching-free separation of electrodes by liquid metals for regeneration of spent Li ion batteries. Natl. Sci. Rev. 2026, nwag142.
- [3].
M.J. Cui,* H.J. Liu, K. Chen, X.W. Shi, B. Xu, C.L. Jiang, D.H. Li, D. Yuan, Y.H. Dou, C. Wu, M.H. Yang, S.X. Dou, Y. Ding,* Scalable and sustainable manufacturing of intermetallic nanocrystals for economical water splitting. Mater. Horiz. 2026, 13, 2358-2370.
- [4].
Y.H. Xia, T. Wang, G. Yang, Y.H. Liu, J.X. Wu, Y.N. Lai, G. Qin, M.J. Cui,* K. Zhang, C.W. Li, Y. Park, J. Bae, M.H. Yang, Y.G. Yao, X.K. Ren,* Yu Ding.* Bioinspired Ultrafast All-Climate Self-Charging Flow Battery. ACS Appl. Mater. & Interfaces 2026, 18, 4, 7026-7035.
- [5].
T. Wang, G, Yang, M.J. Cui,* H.T. Xia, C.L. Jiang, Y.H. Xia, K. Chen, M.H. Yang, J. Bae, C. Gu & Y. Ding.* Self-charging organic flow batteries based on multivalent metal negative electrodes. Nat. Commun. 2025, 10338.

许波
王三峰
张立志
赵志杰
丁宇杰
王思达
胡一帆