1730194769254.jpg

姓名:刘凤泉

职称:讲师

联系方式:fqliuy@sxu.edu.cn

介绍:

     刘凤泉,男,博士,山西大学化学化工学院讲师,主要从事聚合物电解质的设计、制备及其在锂电池中的应用等研究工作。迄今为止,发表论文20余篇,分别发表在 Sci. Adv.,Adv. Funct. Mater.,Nano Lett.,J. Mater. Chem. A等国际知名期刊上。担任ACS Applied Materials & Interfaces、Crystal Growth & Design等多个期刊的审稿人。申请国际PCT专利3项,申请并授权国家发明专利11项。另外,以负责人主持国家自然科学基金青年项目,作为项目骨干参与国家重点领域研发计划、国家自然科学基金等国家级项目多项。

学习与工作经历:

2024/10 - 至今 山西大学,化学化工学院,讲师

2020/09 – 2024/09 青岛大学,纺织服装学院,特聘教授

2019/07 – 2020/08 北京师范大学,化学学院,科研助理

2014/09 – 2019/06 北京师范大学,化学学院,博士(本博)

2010/09 – 2014/06 北京科技大学,化学与生物工程学院,学士

工作职责:

研究方向:

1.低成本和高性能(半)固态电解质的设计与制备;

2. 固态锂金属二次电池、锂-硫电池等高比能二次电池中关键材料及电池结构的研究。

主持科研项目:

1.国家自然科学基金(青年项目),聚丙烯酸酯类聚合物电解质中锂离子的扩散机制及其在锂二次电池中的应用,30.0万元,2022.01-2024.12,在研。

表性论文:

[1] Fengquan Liu, Wenpeng Wang, Yaxia Yin, Shuaifeng Zhang, Jilei Shi, Lu Wang, Xudong Zhang, Yue Zheng, Jianjun Zhou, Lin Li*, Yuguo Guo*, Upgrading Traditional Liquid Electrolyte via in-situ Gelation for Future Lithium Metal Batteries. Sci. Adv., 2018, 4, eaat5383.

[2] Fengquan Liu, Fengjuan Bin, Jinxin Xue, Lu Wang, Yujie Yang, Hong Huo, Jianjun Zhou*, Lin Li*, A Polymer Electrolyte Membrane with High Ionic Conductivity and Enhanced Interfacial Stability for Lithium Metal Battery. ACS Appl. Mater. Interfaces, 2020, 12, 22710-22720.

[3] Fengquan Liu, Ting Li, Jinxin Xue, Ning Li, Hong Huo, Jianjun Zhou*, Lin Li*, Investigation on the Copolymer Electrolyte of Poly(1,3-dioxolane-co-formaldehyde). Macromol. Rapid Commun., 2020, 41, 2000047.

[4] Fengquan Liu, Zhiyu Hu, Jinxin Xue, Hong Huo, Jianjun Zhou*, Lin Li*, Stabilizing Cathode Structure via the Binder Material with High Resilience for Lithium-Sulfur Batteries. RSC Adv., 2019, 9, 40471-40477.

[5] Fengquan Liu, Tianqi Xiang, Jinxin Xue, Sixin Jia, Jun Yan, Hong Huo, Jianjun Zhou*, Lin Li*, Construction of 3D Lithium Metal Anode Using Bi-functional Composite Separator: A New Approach for Lithium Battery. RSC Adv., 2023, 13, 30086-30091.

[6] Zhiyu Hu #; Fengquan Liu#; Jian Gao, Weidong Zhou*, Hong Huo, Jianjun Zhou*, Lin Li*, Dendrite-Free Lithium Plating Induced by in Situ Transferring Protection Layer From Separator. Adv. Funct. Mater., 2019, 30, 1907020.

[7] Jun Yan#, Fengquan Liu#; Zhiyu Hu, Jianjun Zhou*, Lin Li*, Realizing Dendrites-Free Lithium Deposition with a Composite Separator. Nano Lett., 2020, 20, 3798-3807.

[8] Yujie Yang, Rui Wang, Jinxin Xue, Fengquan Liu*, Jun Yan, Sixin Jia, Tianqi Xiang, Hong Huo, Jianjun Zhou*, Lin Li*, In situ forming asymmetric bi-functional gel polymer electrolyte in lithium–sulfur batteries, J. Mater. Chem. A, 2021, 9, 27390-27397.

[9] Rui Wang, Huihui Han, Fengquan Liu*, Sixin Jia, Tianqi Xiang, Hong Huo, Jianjun Zhou*, Lin Li*, Sulfonated poly(vinyl alcohol) as an artificial solid electrolyte interfacial layer for Li metal anode, Electrochim. Acta, 2022, 406, 139840.

[10] Chang Dong, Fengquan Liu*, Yujie Yang, Huijuan Zhao, Hong Huo, Jianjun Zhou*, Lin Li*, Facile and Effective Strategy to Encapslate Sulfur Particles for High-Performance Lithium-Sulfur Battery, ACS Appl. Energy Mater., 2023, 6, 3894-3902.

[11] Sixin Jia, Fengquan Liu*, Jinxin Xue, Rui Wang, Hong Huo, Jianjun Zhou*, Lin Li*, Enhancing the Performance of Lithium-Oxygen Batteries with Quasi-Solid Polymer Electrolyte, ACS Omega, 2023, 8, 36710-36719.

[12] Jinxin Xue, Fengquan Liu*, Tianqi Xiang, Sixin Jia, Jianjun Zhou*, Lin Li*, In-situ forming gel polymer electrolyte for high energy-density lithium metal batteries, Small, 2024, 20, 2307553.

[13] Jingjing Liu, Xiao Liu, Xiaowen Chen, Jianjun Zhou*, Jinxin Xue, Huijuan Zhao, Chen Wang, Fengquan Liu*, Lin Li*, In Situ Forming Asymmetric Gel Polymer Electrolyte Enhances the Performance of High-Voltage Lithium Metal Batteries, ACS Appl. Mater. Interfaces, 2024, 16, 55395-55406.

[14] Xiao Liu, Jingjing Liu, Huijuan Zhao*, Chang Dong, Fengquan Liu*, Lin Li*, In-situ construction of high-performance artificial solid electrolyte interface layer on anode surfaces for anode-free lithium metal batteries, J. Colloid Interface Sci., 2025, 679, 1106-1116.

授权专利:

[1]周建军,刘凤泉,李林,电解液凝胶、锂硫电池及制备方法,国家发明专利,ZL201610393267.0,授权日期:2019.08.27;

[2]李林,刘凤泉,周建军,方芳,一种含有环醚类化合物的可凝胶化体系及其制备方法和应用,国家发明专利,ZL201710386736.0,授权日期:2020.11.06;

[3]李林,刘凤泉,周建军,方芳,一种用于锂离子电池的可凝胶化体系及其制备方法和应用,国家发明专利,ZL201710386738.X,授权日期:2020.11.13;

[4]李林,刘凤泉,周建军,方芳,一种用于锂硫电池的可凝胶化体系及其制备方法和应用,国家发明专利,ZL201710386733.7,授权日期:2020.11.13;

[5]李林,刘凤泉,周建军,方芳,一种含有无机纳米颗粒的可凝胶化体系及其制备方法和应用,国家发明专利,ZL201710386734.1,授权日期:2020.11.13;

[6]李林,刘凤泉,周建军,方芳,一种含有直链醚类化合物的可凝胶化体系及其制备方法和应用,国家发明专利,ZL201710385201.1,授权日期:2020.11.06;

[7]李林,刘凤泉,周建军,方芳,一种柔性全固态锂离子二次电池及其制备方法,国家发明专利,ZL201710385193.0,授权日期:2020.11.06;

[8]李林,刘凤泉,周建军,方芳,一种用于锂空气电池的可凝胶化体系及其制备方法和应用,国家发明专利,ZL201710386080.2,授权日期:2020.11.13;

[9]周建军,胡志宇,刘凤泉,李林,方芳,一种有机体系的超级电容器或电容电池,国家发明专利,ZL201710386081.7,授权日期:2021.01.26;

[10]周建军,胡志宇,刘凤泉,李林,一种通过原位转移形成负极保护层的方法,国家发明专利,ZL201910190086.1,授权日期:2022.01.14;

[11]周建军,李宁,刘凤泉,李林,一种含有交联剂的可凝胶化体系及其制备方法和应用,国家发明专利,ZL201811269909.1,授权日期:2024.03.26

院所中心
校内门户
TOP