
王鹏,男,汉族,1992年11月生,中共党员,博士,硕士研究生导师。2023年6月入职兰州理工大学石油化工学院,从事电化学储能技术与工程领域科研工作。科研兴趣主要集中在锂离子电池关键材料的产业化技术开发与应用以及相关基础科学研究,包括电化学基础理论、电极材料制备技术、功能型电解液配方、电池化成技术、电池测试技术等的开发,以及结合人工智能技术的相关计算机模拟、仿真、数据挖掘技术开发。目前以第一作者或通讯作者身份在Journal of Materials Chemistry,Applied Surface Science,Journal of Power Sources,Electrochimica Acta等SCI期刊发表学术论文7篇,获得授权专利4件。获得甘肃省科技进步奖二等奖1项,甘肃省冶金有色工业科技进步一等奖2项。承担省部级课题1项,横向课题1项,作为主要完成人结题省级课题2项。指导本科生参加全国大学生化工设计竞赛并获得全国二等奖1项。
联系方式:Email: wangpeng2023@lut.edu.cn
代表性论文:
[1] Dou H.Z, Huang J, Zhang F.L, Zong F.F, Zhou X.A, Zhao D.N, Zhang N.S, Cui X.L, Shi Y.L, Wang P*. Constructing ion and electron diffusion highways in manganese-based olivine cathodes enables excellent electrochemical performance. Journal of Power Source. 2025; 656:238006.
[2] Wang P, Yan D, Wang C. Y, Ding H, Dong H, Wang J, Wu S.M. Cui X.L, Li C.L, Zhao D.N, Li S.Y. Study of the formation and evolution of solid electrolyte interface via in-situ electrochemical impedance spectroscopy. Applied Surface Science. 2022;596:153572.
[3] Wang P, Li J, Zhang Y, Cui X, Zhao D, Li S. Influence of ligands on lithium salt properties: A comprehensive approach to the structure-function relationship. Journal of Power Sources. 2023;565:232881.
[4] Wang P, Zhang J, Xu F, Wang J, Li J, Shen Y, Li C.L, Cuiu X.C. Li S.Y. Improving electric field strength of interfacial electric double layer and cycle stability of Li-ion battery via LiCl additive. Electrochimica Acta. 2022;429:141060.
[5] Wang P, Cui X.L, Zhao D.N, Yan D, Ding H, Dong H, Wang J, Wu S.M. Effects of soluble products decomposed from chelato-borate additives on formation of solid electrolyte interface layers. Journal of Power Sources. 2022;535:231451.
[6] Wang P, Wu S.M, Li J.N,, Zhang Y.L, Zhang Y, Cui X.L, Li C.L, Zhao D.N, Li S.Y. Building a rigid-soft coupling interphase by a reduction–oxidation collaborative approach with lithium difluorobis(oxalato) phosphate additives. Journal of Materials Chemistry A. 2023;11(4):1734-1741.
[7] Wang P, Li H.L, Wei Y. Zhao D.N, Mao L.P, Cui X.L, Zhang H.M, Zhou X.A, Li S.Y. Truncated octahedral LiNi0.5Mn1.5O4 with excellent electrochemical properties for lithium-ion batteries prepared by a graphite assisted calcination method. New Journal of Chemistry. 2019; 43: 15396-15404.
主要获奖
1. 锂离子电池正极材料锰酸锂制备关键技术与产业化应用,甘肃省科技进步奖二等奖
2. “天正设计杯”第十八届全国大学生化工设计竞赛,国家二等奖