左晓希 - 物理化学研究所 - 华南师范大学化学学院

左晓希

职称:教授

联系邮箱:zuoxiaoxi75@163.com

研究方向:锂/钠离子电池功能电解质、隔膜材料

招生方向:物理化学专业硕士、材料与化工专业硕士、学科化学教育硕士、物理化学专业博士

个人简历

材料物理与化学专业博士,教授,博士生导师


教育经历

(1) 2003.09–2007.01,华南理工大学,材料物理与化学专业,获工学博士学位。

     (2) 1998.09–2001.04,中南大学,应用化学专业,获工学硕士学位。

     (3) 1993.09–1997.06,信阳师范学院,化学教育专业, 获理学学士学位。


工作经历

20014月至今  华南师范大学化学学院担任讲师、副教授、教授。


讲授课程

主要承担学院本科生及研究生《物理化学》、《物理化学实验》、《胶体与界面化学》、《专业英语》和《化学与社会》等课程的教学。


承担课题

1.国家自然科学基金面上项目,21875077,高电压锂离子电池电解质溶液亚硫酸乙烯酯类双功能成膜分子的构建及性能研究,2019/01-2022/12,主持。

2.广东省自然科学基金自由申请项目,2018A030313886,氟烷基/亚硫酸乙烯酯类物质双功能成膜分子的构建及其在高工作电压锂离子电池中的性能研究,2018/05-2021/04,主持。

3. 国家自然科学基金青年基金项目,21303062,含芳香基硫醚衍生物的电解质溶液在高电压锂离子电池正极材料表面的成膜机理及其性能,2014/01-2016/12,主持。


获奖与荣誉

在科研方面,近年来一直从事能源材料方向尤其是锂离子电池相关材料的基础和应用研究,对锂离子电池电解质及隔膜材料的原理、性质及存在问题有较深入的认识和研究,研究成果“锂离子电池电解质的研究与产业化应用”获2007年度广东省科学技术一等奖;锂离子电池过充安全型功能电解液的开发与应用”获得2008年广州市科技进步二等奖“动力锂离子电池用功能电解质的产业化”获得2012年广州市科技进步二等奖;“低温应用锂离子电池制备技术的开发”获得2018年度广东省科技进步二等奖。

在教学方面,获得华南师范大学教师教学大赛创新组一等奖(2023),第四届广东省高校教师教学创新大赛新工科组赛特等奖(2024)、国赛三等奖(2024)。

参与的教学项目“基于多专业人才培养目标的多层次、多维度物理化学教学体系建设与应用”获得2018年度第八届广东省教育成果奖(高等教育)二等奖。

 


论文专著

[1] J. Li, S. Huang, P. Yu, Z. Lv, K. Wu, J. Li, J. Ding, Q. Zhu, X. Xiao, J. Nan, X. Zuo, Unraveling the underlying mechanism of good electrochemical performance of hard carbon in PC/EC–Based electrolyte, Journal of Colloid And Interface Science, 657 (2024) 653–663.

[2] Z. Su, W. Qiu, Y. He, Y. Zeng, D. Xie, X. Xiao, J. Nan, X. Zuo, A strontium ferrite modified separator for adsorption and catalytic conversion of polysulfides for excellent lithium–sulfur batteries, Dalton Trans, 52 (2023) 9032–9041. 

[3] S. Liu, W. Qiu, Z. Su, J. Li, X. Xiao, J. Nan, X. Zuo, Propanediol Cyclic Sulfate as An Electrolyte Additive to Improve the Cyclic Performance of LiNi0.6Co0.1Mn0.3O2/Graphite Pouch-Cell at High Voltage, ChemElectroChem, 10 (2023) e202201039 (1 of 9)

[4] D. Xie, X. Zuo, Z. Su, T. Zhu, S. Liu, X. Xiao, J. Nan, A Natural Polymer Modified Separator as a Barrier in Lithium-Sulfur Batteries to Inhibit the Shuttle of Polysulfides, Energy Technol, 10 (2022) 2101142.

[5] T. Zhu, X. Zuo, X. Lin, Z. Su, J. Li, R. Zeng, J. Nan, High-Wettability Composite Separator Embedded with in Situ Grown TiO2 Nanoparticles for Advanced Sodium-Ion Batteries, Energy Technol, 10 (2022) 2200409.

[6] Z. Su, Y. He, S. Liu, J. Li, X. Xiao, J. Nan, X. Zuo, Uniform Lithium Deposition Achieved by SnO2 /Hydroxypropyl Methyl Cellulose Composite Separator toward Ultra stable Lithium Metal Batteries, ACS Appl. Energy Mater, 5 (2022) 10264−10275.

[7] L. Zhang, X. Zuo, T. Zhu, W. Huang, X. Zhao,W. Lei, D. Xie, J. Liu, X. Xiao, J. Nan, 1- (P-toluenesulfonyl) imidazole (PTSI) as the novel bifunctional electrolyte for LiCoO2 -based cells with improved performance at high voltage, Journal of Power Sources, 491 (2021) 229596.

[8] T. Zhu, Q. Chen, D. Xie, J. Liu, X. Chen, J. Nan, X. Zuo, Low-Cost and Heat-Resistant Poly(catechol/polyamine)-Silica Composite Membrane for High-Performance Lithium-Ion Batteries, ChemElectroChem, 8 (2021) 1369–1376.

[9] L. Zhang, X. Zuo, T. Zhu, W. Lei, D. Xie, X. Xiao,X. Chen, J. Nan, A new fluorinated sultone as multifunctional electrolyte additive for high-performance LiCoO2/graphite cell, ChemElectroChem, 8 (2021) 2534–2544.

[10] T. Zhu, X. Zuo, Y. Li, L. Zhang, D. Xie, X. Xiao, J. Liu, J. Nan, A novel membrane based on cellulose acetate nanofibers with a ZrO2 reinforcement layer for advanced sodium-ion batteries, Journal of Membrane Science, 620 (2021) 118917.

[11] W. Lei, X. Deng, X. Zuo, L. Zhang, D. Xie, S. Liu, J. Liu, J. Nan, 4‑Hydroxy-2-Butanesulfonic Acid Gamma-sultone as a Bifunctional Electrolyte Additive for LiCoO2/Graphite Batteries With Enhanced Performances, ACS Appl. Energy Mater, 4 (2021), 5877−5887.

[12] Q. Chen, X. Zuo, H. Liang, T. Zhu, Y. Zhong, J. Liu, J. Nan, A heat-resistant poly(oxyphenylene benzimidazole)/ethyl cellulose blended polymer membrane for highly safe lithium-ion batteries, ACS Applied Materials & Interfaces, 12 (2020) 637−645.

[13] X. Deng, X. Zuo, H. Liang, L Zhang, J. Liu, J. Nan, (Phenylsulfonyl)acetonitrile as a high voltage electrolyte additive to form a sulfide solid electrolyte interface film to improve the performance of lithium-ion batteries, The Journal of Physical Chemistry, 123 (2019) 12161-12168.

[14] J. Wu, X. Zuo, Q. Chen, X. Deng, H. Liang, T. Zhu, J. Liu,W. Li, J. Nan, Functional composite polymer electrolytes with imidazole modified SiO2 nanoparticles for high-voltage cathode lithium ion batteries, Electrochimica Acta, 320 (2019) 134567

[15] X. Ma, X. Zuo, J. Wu, X. Deng, X. Xiao, J. Liu, J. Nan, Polyethylene-supported ultra-thin polyvinylidene fluoride/hydroxyethyl cellulose blended polymer electrolyte for 5 V high voltage lithium ion batteries, Journal of Materials Chemistry A, 6 (2018) 1496-1503.

[16] X. Zuo, X. Deng, X. Ma, J. Wu, H. Liang, J. Nan, 3-(Phenylsulfonyl)propionitrile as a higher voltage bifunctional electrolyte additive to improve the performance of lithium-ion batteries, Journal of Materials Chemistry A, 6 (2018) 14725-14733.

[17] X. Zuo, X. Ma, J. Wu, X. Deng, X. Xiao, J. Liu, J. Nan, Self-supporting ethyl cellulose/poly(vinylidene fluoride) blended gel polymer electrolyte for 5 V high-voltage lithium-ion batteries, Electrochimica Acta, 271 (2018) 582-590.

[18] X. Zuo, J. Wu, X. Ma, X. Deng, J. Cai, Q. Chen, J. Liu, J. Nan, Apoly(vinylidenefluoride) /ethyl cellulose and amino-functionalized nano-SiO2 composite coated separator for 5 V high-voltage lithium-ion batteries with enhanced performance, Journal of Power Sources, 407 (2018) 44-52.

[19] X. Zuo, M. Zhao, X. Ma, X. Xiao, J. Liu, J. J. Nan, Effect of diphenyl disulfide as an additive on the electrochemical performance of Li1.2Mn0.54Ni0.13Co0.13O2/graphite batteries at elevated temperature, Electrochimica Acta, 245 (2017) 705-714.

[20] M. Zhao, X. Zuo, X. Ma, X. Xiao, J. Liu, J. Nan, Self-supported PVdF/P(VC-VAc) blended polymer electrolytes for LiNi0.5Mn1.5O 4 /Li batteries, Journal of Membrane Science, 532 (2017) 30-37.

[21] M. Zhao, X. Zuo, X. Ma, X. Xiao, L. Yu, J. Nan, Diphenyl disulfide as a new bifunctional film-forming additive for high-voltage LiCoO2/graphite battery charged to 4.4 V, Journal of Power Sources, 323 (2016) 29-36.