李希超,博士,青岛大学特聘教授。
教育及工作履历
2022-至今 青岛大学,动力集成及储能系统工程技术中心,机电工程学院,副教授
2018~2022 中车青岛四方车辆研究所有限公司,高级工程师
2016~2018中国科学院青岛生物能源与过程研究所,博士后
2010~2016中国科学院金属研究所,博士
2006~2010中国矿业大学,本科
主要研究方向
1. 锂/钠离子电池正极材料开发及应用;
2. 锂离子电容器材料及关键技术研究;
3. 燃料电池连接体涂层研发。
学术成果
1. 项目
(1)中国博士后科学基金,类石墨烯晶体Ti3C2Tx基复合材料的储锂机制研究,主持。
(2)山东省重点研发计划,锂离子电容器电极制备与单体产业化及应用研究,参与。
2. 代表性论文
[1]X.C. Li, L.L. Zheng, Thickness-dependent oxidation behaviors of Ti3AlC2foils at 1100 ◦C in air, Corrosion Science 185 (2021) 109431.
[2]X.C. Li, L.Z. Liu, Mitigated voltage decay and improved electrochemical properties of 0.5Li2MnO3∙0.5LiNixCoyMn1-x-yO2cathode via composition optimizing, Ionics 27 (2021) 2889–2900.
[3]X.C. Li, L.L. Zheng, J.F. Wu, Multiply depolarized composite cathode of Li1.2Mn0.54Ni0.13Co0.13O2embedded in a combinatory conductive network for lithium-ion battery with superior overall performances, Journal of Alloys and Compounds 744 (2018) 41-50.
[4]X.C. Li, Y.H. Qian, J.F. Wu, Enhanced lithium and electron diffusion of LiFePO4cathode with two-dimensional Ti3C2MXene nanosheets, Journal of Materials Science 53 (2018) 11078-11090.
[5]X.C. Li, L.L. Zheng, Y.H. Qian, J.J. Xu, M.S. Li, Effects of High Temperature Oxidation on Mechanical Properties of Ti3AlC2, Journal of Materials Science & Technology 33 (2017) 596–602.
[6]X.C. Li, L.L. Zheng, Y.H. Qian, J.J. Xu, M.S. Li, Breakaway oxidation of Ti3AlC2during long-term exposure in air at 1100oC, Corrosion Science 104 (2016) 112-122.
[7]X.C. Li, Y.H. Qian, L.L. Zheng, M.S. Li, Determination of the critical content of Al in Ti3AlC2for the formation of Al2O3scale during oxidation at 1100 oC in air, Journal of the European Ceramic Society 36 (2016) 3311-3318.
[8] Q. Cheng, L.L. Zheng*,X.C. Li, B. Xu*, M.Y. Sun, J. Shi*, Z.Q. Dai, T.Z. Zhang , H.X. Zhang, Microstructural evolution and growth kinetics of interfacial reaction layers in SUS430/Ti3SiC2diffusion bonded joints using a Ni interlayer, C. Inter. 48 (2022) 4484–4496.
[9] L.Z. Jia, D. Wang, T. Yin,X.C. Li, L.W. Li, Z.Q. Dai*, L.L. Zheng*, Experimental Study on Thermal-Induced Runaway in High Nickel Ternary Batteries, ACS O. 2022, 7, 14562−14570.
[10] T. Yin, L.Z. Jia,X.C. Li, L.L. Zheng*, Z.Q. Dai, Effect of High-Rate Cycle Aging and Over-Discharge on NCM811 (LiNi0.8Co0.1Mn0.1O2) Batteries, Energies 2022, 15, 2862.
[11] L.L. Zheng*,X.C. Li*, W.B. Guan, M.S. Li, Y.H. Qian, J.J. Xu, Oxidation behavior and electrical conductivity of MAXs phase (Ti,Nb)3SiC2as a novel intermediate temperature solid oxide fuel cell interconnect material in anode environment, I. J. H. Energy, 46(2021) 9503-9513.
[12] L.L. Zheng, Q.S. Hua,X.C. Li*, Investigation on the effect of Nb doping on the oxidation mechanism of Ti3SiC2, Corrosion Science 140(2018) 374-378.
[13] L.L. Zheng, Q.S. Hua,X.C. Li*, M.S. Li, Y.H. Qian, J.J. Xu, Z.Q Dai, H.X. Zhang, T.Z. Zhang, J.W. Wu, Exploring a novel ceramic (Ti,W)3SiC2for interconnect of intermediate temperature solid oxide fuel cell,International Journal of Hydrogen Energy 43 (2018)7483-7491.
[14]L.L. Zheng, Q.S. Hua,X.C. Li*, M.S. Li, Y.H. Qian, J.J. Xu, Investigation on the properties of Ta doped Ti3SiC2 as solid oxide fuel cell interconnects, RSC Adv., 7 (2017) 42350-42356.
联系方式:
办公地址:动力集成及储能系统工程技术中心201
E-mail:lixichao2015@163.com.