基本信息
李万鹏  男    中国科学院大学
电子邮件: liwanpeng@binn.cas.cn
通信地址: 北京市怀柔区雁栖经济开发区杨雁东一路8号
邮政编码: 101400

研究领域

半导体材料的超快电子显微学与电子显微学分析。

招生信息

070205 凝聚态物理 

080502 材料学


教育背景

2018-09--2021-10   香港城市大学   哲学博士
2015-09--2018-07   北京工业大学   理学硕士
2011-09--2015-07   沈阳航空航天大学   工学学士

工作经历


工作简历
2023-09~现在, 中国科学院北京纳米能源与系统研究所, 副研究员
2021-10~2023-08,香港城市大学, 博士后
2021-09~2021-10,香港城市大学, 研究助理

专利与奖励

   
奖励信息
(1) Outstanding Academic Performance Award for Research Degree Students (non-local UGC-funded students), 一等奖, 研究所(学校), 2020
(2) Research Tuition Scholarship, 一等奖, 研究所(学校), 2020

出版信息

1. J. Huang#, W.P. Li*,  T. Yang, T.H. Chou, R. Zhou, B. Liu, J.C. Huang*, Y. Liu*. An additively manufactured precipitation hardening medium entropy alloy with excellent strength-ductility synergy over a wide temperature range. Journal of Materials Science & Technology. 197 (2024) 247-64.

2.      X.C. Li#, Y. Meng#, W.P. Li#, J. Zhang, C.Q. Dang, H.Y. Wang, S-W. Hung, R. Fan, F-R. Chen*, S.J. Zhao*, J.C. Ho*, Y. Lu*, Multislip-enabled morphing of all-inorganic perovskites, Nature Materials. (2023) 1-7.

3.      T.H. Chou, W.P. Li*, H.W. Chang, B.X. Cao, J.H. Luan, J.C. Huang, T. Yang*. Suppressing temperature-dependent embrittlement in high-strength medium-entropy alloy via hetero-grain/precipitation engineering. Scripta Materialia. 229 (2023) 115377.

4.      W.F. Yu#, X.Y. Liu#, W.P. Li*, W.Y. Chen, X.H. Du, T.H. Chou, X Wang*, and J. C. Huang*. Improvement of the corrosion performance of a cold-rolled Co40Cr20Ni30Al5Ti5 high-entropy alloy by adjusting annealing treatments. Journal of Materials Research and Technology. 24 (2023) 3984-3995.

5.      X.Y. Liu#, W.P. Li#, W.Y. Chen, T.H. Chou, C.C. Wang, J.M. Ren, X. Wang*, J.C. Huang*, M. Wu. Corrosion resistance improvement of multi-principal element alloy by tailored structure with heterogeneous grains. Journal of Materials Research and Technology. 23 (2023) 5301-5309.

6.      T.H. Chou, W.P. Li*, H.W. Chang, X.H. Du, W.S. Chuang, T. Yang*, Y.T. Zhu, J.C. Huang*, Quantitative analysis of hetero-deformation induced strengthening in heterogeneous grain structure, International Journal of Plasticity, 159 (2022) 103482.

7.      W.P. Li, T-H. Chou, T. Yang, W.-S. Chuang, J.C. Huang*, J.H. Luan, X.K. Zhang, X.F. Huo, H.J. Kong, Q.F. He, X.H. Du, C.T. Liu, and F.-R. Chen, Design of ultrastrong but ductile medium-entropy alloy with controlled precipitations and heterogeneous grain structures, Applied Materials Today, 23 (2021) 101037.

8.      W.P. Li, C.X. Liu, L.L. Liu, J.C. Huang, and W. Sun*, Activation of pyramidal II <c+a> slips at room temperature in Mg-Zn-Y 18R and 14H long-period stacking ordered phases, Intermetallics, 135 (2021) 107225.

9.      X.H. Du, W.P. Li, H.T. Chang, T. Yang, G.S. Duan, B.L. Wu, J.C. Huang*, F-R. Chen, C-T. Liu, W-S. Chuang, Y. Lu, M.L. Sui, and E.W. Huang, Dual heterogeneous structures lead to ultrahigh strength and uniform ductility in a Co-Cr-Ni medium-entropy alloy, Nature Communications, 11(1) (2020) 1-7.

10.      T. Yang#, Y.L. Zhao#, W.P. Li, C.Y. Yu, J.H. Luan, D.Y. Lin, L. Fan, Z.B. Jiao, W.H. Liu, X.J. Liu, J.J. Kai, J.C. Huang, and C.T. Liu*, Ultrahigh-strength and ductile superlattice alloys with nanoscale disordered interfaces, Science, 369 (6502) (2020) 427-432.


科研活动

   
参与会议
(1)HAADF, EDS and APT characterizations of nano-precipitated multi-principalelement alloys   2019-07-15