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个人简介

工学博士,华南师范大学“电化学储能材料与技术”教育部工程研究中心、广东高校“电化学储能与发电技术”重点实验室副研究员。近年来一直从事锂离子电池/动力锂离子电池相关材料的研究与应用,作为项目负责人,目前主持国家自然科学基金青年基金(21003054)、教育部博士点新教师启动基金(20104407120008)、广东省自然科学基金博士启动基金(S2011040001731)等项目。凝胶聚合物电解质成果获2012年广东省科技发明奖一等奖(排名第三)、功能电解质研究成果分别获2007年获广东省科技进步奖一等奖(排名第四)、2009年获广州市科技进步奖二等奖。以第一作者身份受邀撰写英文著作2章,“Electrolytes and Anode Interfacial Chemistry”、“Electrolytes for Li Ion Batteries with High Voltage Cathodes”,于2013年分别由国际著名出版社Springer和John-Wiely出版。已在J. Phys. Chem. A/B/C、J. Electrochem. Soc.、Electrochem. Commun.、J. Power Sources、Electrochim. Acta、Electrochem. Solid-State Lett.等刊物上发表SCI论文30多篇(封面论文1篇),影响因子3.0以上20多篇,SCI他引200余次(H-index=28);申请中国发明专利5件,获授权2件;申请美国/国际发明专利3件,获授权1件。 工作经历: 2010.3-2011.12,华南师范大学,化学与环境学院,讲师 2012.1-至今,华南师范大学,电化学储能材料与技术教育部工程研究中心,副研究员 教育背景: 2006.9-2009.12,华南理工大学/University of Rhode Island,联合培养博士,导师:李伟善教授/Brett L. Lucht教授 2010.9-2012.8,University of Rhode Island,化学系,博士后/研究助理教授(合作导师:Brett L. Lucht教授) 主要专利: 1)许梦清,左晓希,李伟善. 一种锂离子电池负极成膜功能电解液及其制备方法. 专利号:ZL 200510034734.2. 2)许梦清,邢丽丹,李伟善. 用于锂离子电池的阻燃电解液及其制备方法与应用. 专利号:ZL 200910193634.2. 3)许梦清,邢丽丹,李伟善. 锂离子电池用的非水电解液及其制备方法与应用. 申请号:200910193635.7. 4)许梦清,邢丽丹,李伟善. 用于高电压锂离子电池的非水电解液及其制备方法与应用. 申请号:200910193637.6. 5)许梦清,麦少苇,李伟善. 一种电解质锂盐及含有该锂盐的电解液制备方法与应用.申请中;201310069675.7 6)李斌,李伟善,许梦清,李本臻. 用于锂离子电池的含硫成膜功能电解液及其制备方法与应用.申请号:201110127416.6 7)Brett Lucht, Ang Xiao, Li Yang, Mengqing Xu. Novel Electrolyte for Lithium Ion Batteries. US Patent, #8,334,404 B2. 8)Brett Lucht, Li Yang, Mengqing Xu, Ang Xiao. Inhibition of Electrolyte Oxidation in Lithium Ion Batteries with Electrolyte Additives. International Application No.:PCT/US2009/049534; Publication No.: WO/2010/003069; Publication Date: 2010.01.07. (International/US patent). 主要项目: 1)锂离子电池磷基芳环双齿配体结构锂盐的制备及其性质研究,国家自然科学基金委,2011.01-2013.12,19万,项目负责人; 2)锂离子电池铝系草酸/芳基双齿配体结构锂盐的制备及其性质研究,教育部科技发展中心,2011.1-2012.12,3.6万,项目负责人; 3)磷系芳基双齿配体结构锂盐的设计、制备及其性质研究,广东省自然科学基金委,2011.10-2013.10,3.0万,项目负责人; 4)三元材料LiNi0.5Mn0.3Co0.2O2在锂离子电池中的研究及引用,广东省科技厅科技攻关计划,2011.10-2012.12,8.0万,项目负责人; 主要著作: 1)“Lithium Batteries Advanced Technologies and Applications” “Electrolytes for Lithium-Ion Batteries with High-Voltages Cathodes”, Chapter 4, M. Q. Xu, S. Dalavi, B. L. Lucht, Edited by Bruno Scrosati, K. M. Abraham, Walter Van Schalkwijk, Jusef Hassoun. John-Wiley, pp 71-88, Feb., 2013 2)“Electrolytes and Anode Interfacial Chemistry”, M. Q. Xu, L. D. Xing, W. S. Li, Editors: T. R. Jow, K. Xu, O. Borodin, M. Ue, Springer press, 2013, in press.

研究领域

锂离子电池正负极材料、功能电解质材料

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

1)L. Chen, M. Q. Xu*, B. Li, L. D. Xing, W. S. Li, X. P. Li. Dimethoxydiphenylsilane (DDS) as electrolyte additive for overcharge protection of lithium-ion batteries, J. Power Sources, 2013, DOI:10.1016/j.jpowsour.2013.03.139. 2)M. Q. Xu*, Y. Liang, B. Li, L. D. Xing, Y. Wang, W. S. Li. Tris (pentafluorophenyl) phosphine: a dual functionality additive for flame-retarding and sacrificial oxidation on LiMn2O4 for lithium ion battery. Materials Chemistry and Physics, 2013, accepted in press. 3)M. Q. Xu, D. S. Lu, A. Garsuch, B. L. Lucht. Improved cycling performance of LiNi0.5Mn1.5O4 cathodes with electrolytes containing dimethylmethylphophonate (DMMP), J. Electrochem. Soc., 2012, 159: A2130-A2134. 4)M. Q. Xu, Y. L. Liu, B. Li, W. S. Li, X. P. Li, S. J. Hu, Tris (pentafluorophenyl) phosphine: An electrolyte additive for high voltage Li-ion batteries, Electrochem. Commun., 2012, 18: 123-126. 5)M. Q. Xu, L. Zhou, D. Chalassani, S. Dalavi, B. L. Lucht, Investigation of the solid electrolyte interphase on MCMB and NG electrodes in lithium tetrafluorooxalatophosphate [LiPF4C2O4] based electrolyte, J. Electrochem. Soc., 2011, 158: A1-A5. 6)M. Q. Xu, L. Zhou, L. S. Hao, L. D. Xing, W. S. Li, B. L. Lucht. Investigation and application of lithium difluoro (oxalate) borate (LiDFOB) as additive to improve the thermal stability of electrolyte for lithium ion batteries, J. Power Sources, 2011, 196: 6794-6801. 7)M. Q. Xu*, L. S. Hao, Y. L. Liu, W. S. Li, L. D. Xing, B. Li. Experimental and theoretica investigation of dimethyl acetamide (DMAc) as electrolyte stabilizing additive for lithium ion batteries, J. Phy. Chem. C, 2011, 115: 6085-6094. 8)M. Q. Xu, A. Xiao, W. S. Li, B. L. Lucht. Investigation of lithium tetrafluorooxalatophosphate [LiPF4C2O4] as a lithium-ion battery electrolyte for elevated temperature performance, J. Electrochem. Soc., 2010, 157: A115-A120. 9)M. Q. Xu, L. Zhou, L. D. Xing, W. S. Li, B. L. Lucht. Experimental and theorectical investigation on 4,5-dimethyl-[1,3]dioxol-2-one as solid electrolyte interface forming additive for lithium-ion batteries, Electrochim. Acta, 2010, 55: 6743-6748. 10)M. Q. Xu, L. D. Xing, W. S. Li. Additives of interphase film formation for lithium ion batteries, Progress in Chemistry, 2010, 21: 2017-2017. (Review paper, Chinese version) 11)M. Q. Xu, A. Xiao, W. S. Li, B. L. Lucht. Investigation of lithium tetrafluorooxalatophosphate as a lithium-ion battery electrolyte, Electrochem. Solid-State Lett., 2009, 12: A155-A158. 12)M. Q. Xu, W. S. Li, B. L. Lucht. Effect of propane sultone on elevated temperature performance of anode and cathode materials in lithium ion batteries. J. Power Sources, 2009, 193: 804-809. 13)M. Q. Xu, A. Xiao, L. Yang, B. L. Lucht. Novel electrolyte for lithium ion batteries: lithium tetrafluorooxalatophosphonate (LiPF4C2O4). ECS Trans., 2009, 16: 3-11. 14)M. Q. Xu, L. D. Xing, W. S. Li, X. X. Zuo, G. L. Li, D. Shu. Application of cyclohexyl benzene as electrolyte additive for overcharge protection of lithium ion battery. J. Power Sources, 2008, 184: 427-431. 15)M. Q. Xu, W. S. Li, X. X. Zuo, J. S. Liu, X. Xu. Performance improvement of lithium ion battery using PC as a solvent component and BS as an SEI forming additive, J. Power Sources, 2007, 174: 705-710. 16)M. Q. Xu, X. X. Zuo, W. S. Li, H. J. Zhou, J. S. Liu, Z. Z. Yuan. Effect of butyl sultone on the Li-ion battery performance and interface on graphite electrode. Acta Physico-Chimical Sinica, 2006, 22: 335-340.

学术兼职

受邀担任国际知名刊物J. Power Sources、J. Electrochem. Soc.、Electrochem. Commun. Electrochemica Acta等刊物的审稿人。

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