师资队伍

梅文昕


个人履历

青岛科技大学安全工程专业学士 (2017)

中国科学技术大学安全科学与工程专业博士 (2022)

中国科学技术大学博士后研究员 (2022-2024)

中国科学技术大学特任副研究员(2024-2025

中国科学技术大学副研究员(2025-

 

研究方向

锂离子电池析锂及热失控机制

锂离子电池光纤原位检测

锂离子电池多场耦合建模

 

个人获奖

博士后创新人才支持计划(国家级,2022

安徽省青年拔尖人才青年学者(省部级,2024

安徽省科学技术进步奖一等奖(排名第8

IACT Junior Award(国际化学热动力学学会,2023

每两年仅评1-2名获奖人)

Fire 2023 Best PhD Thesis Award2024,当年仅2名获奖人)

公共安全科学技术奖优秀博士论文奖(国家一级学会,2022

中国科学院院长特别奖(2021

中国科学院“特别研究助理”(2022

小米青年学者(2022

中国科学技术大学“墨子杰出青年特资津贴”一等资助(2022

中国科学技术大学优秀博士学位论文提名奖(2022

第二届国际锂电池火灾安全研讨会最佳海报奖(2021

第十六届“杨亚-基金”奖学金(2020

研究生国家奖学金(2019
28届全国结构工程学术会议优秀论文一等奖(2019

2019COMSOL年会最佳海报奖(2019


学位/职称

工学博士

中国科学技术大学副研究员

硕士生导师

  

办公室电话

(+86)551 63607572

E-mailheart@ustc.edu.cn

 


学术任职  

IEEE PES电动汽车技术委员会(中国)动力电池系统分委会理事(IEEE PES China Satellite Technical Committee-Electric Vehicle Committee Battery System Subcommittee

Safety Science 客座编辑

Fire 客座编辑

Future Batteries客座编辑


科研项目

锂离子电池析锂-剥离过程的热力学影响机制及建模研究:博士后创新人才支持计划(博新计划),主持,执行期:2022.07-2024.06

锂离子电池过充-析锂-热失控的热动力学演化机制与全链条预测模型研究:国家自然科学基金青年科学基金项目,主持,执行期:2024.01- 2026.12
内蒙古自治区“科技突围”项目“电化学储能电站火蔓延防范关键技术”子课题,主持,执行期:2024.11-2027.10

储能系统热失控故障识别复现技术与燃爆泄压方案研究:国家重点研发计划专题,主持,执行期:2022.11-2025.10

锂离子电池析锂-剥离的电热耦合演化机理与预测模型研究:安徽省自然科学基金青年项目,主持,2023.09-2025.08

基于光纤原位传感的锂离子电池热失控预警机制及建模研究:博士后面上基金,主持,执行期:2022.12-2024.06

基于光纤传感的锂离子电池热失控内部多场耦合特征监测与预警研究:中国科学技术大学青年创新基金,主持,执行期:2025.01-2026.12

 

代表性论著

Journals

[1] Wenxin Mei#, Zhi Liu#, Chengdong Wang, Chuang Wu, Yubin Liu, Pengjie Liu, Xudong Xia, Xiaobin Xue, Xile Han, Jinhua Sun, Gaozhi Xiao, Hwa-yaw Tam, Jacques Albert, Qingsong Wang*, Tuan Guo*. Operando monitoring of thermal runaway in commercial lithium-ion cells via advanced lab-on-fiber technologies. Nature Communications 14 (2023) 5251.

[2] Wenxin Mei, Yue Zhang, Yuxuan Li, Ping Zhuo, Yuxi Chu, Ye Chen, Lihua Jiang, Hongmin Zhou*, Jinhua Sun, Qingsong Wang*, Unveiling voltage evolution during Li plating-relaxation-Li stripping cycling of lithium-ion batteries, Energy Storage Materials66 (2024) 103193.

[3] Wenxin Mei, Lihua Jiang, Chen Liang, Jinhua Sun, Qingsong Wang*, Understanding of Li‐plating on graphite electrode: detection, quantification and mechanism revelation, Energy Storage Materials 41 (2021) 209-221.

[4] Wenxin Mei, Lin Zhang, Jinhua Sun, Qingsong Wang*. Experimental and Numerical methods to investigate the overcharge caused lithium plating for lithium ion battery,  Energy Storage Materials 32 (2020) 91-104.

[5] Wenxin Mei, Zhixiang Cheng, Longbao Wang, Anqi Teng, Zhiyuan Li, Kaiqiang Jin, Jinhua Sun, Qingsong Wang*, Thermal hazard comparison and assessment of Li-ion battery and Na-ion battery, Journal of Energy Chemistry102 (2025) 18-26.

[6] Wenxin Mei, Lihua Jiang, Hongmin Zhou, Jinhua Sun, Qingsong Wang*, Correlating electrochemical performance and heat generation of Li plating for lithium-ion battery with fluoroethylene carbonate additive, Journal of Energy Chemistry 74 (2022) 446-453.

[7] Wenxin Mei, Qiangling Duan, Wei Lu, Jinhua Sun, Qingsong Wang*. An investigation on expansion behavior of lithium ion battery based on the thermal-mechanical coupling model, Journal of Cleaner Production 274 (2020) 122643.

[8] Wenxin Mei, Qiangling Duan, Chunpeng Zhao, Wei Lu, Jinhua Sun, Qingsong Wang*. Three-dimensional layered electrochemical-thermal model for a lithium-ion pouch cell Part II. The effect of units number on the performance under adiabatic condition during the discharge, International Journal of Heat and Mass Transfer 148 (2020) 119082.

[9] Wenxin Mei, Huang Li, Chunpeng Zhao, Jinhua Sun, Qingsong Wang*. Numerical study on thermal characteristics comparison between charge and discharge process for lithium ion battery, International Journal of Heat and Mass Transfer 162 (2020) 120319.

[10]  Wenxin Mei, Haodong Chen, Jinhua Sun, Qingsong Wang*. Numerical study on tab dimension optimization of lithium-ion battery from the thermal safety perspective, Applied Thermal Engineering 142 (2018) 148–165.

[11]  Wenxin Mei, Chen Liang, Jinhua Sun, Qingsong Wang*. Three-dimensional layered electrochemical-thermal model for a lithium-ion pouch cell, International Journal of Energy Research 44 (2020) 8919–8935.

[12]  Wenxin Mei, Qiangling Duan, Peng Qin, Jiajia Xu, Qingsong Wang*, Jinhua Sun. A three-dimensional electrochemical-mechanical model at the particle level for lithium-ion battery, Journal of The Electrochemical Society 166(14) (2019) A3319-A3331.

[13]  Wenxin Mei, Haodong Chen, Jinhua Sun, Qingsong Wang*. The effect of electrode design parameters on battery performance and optimization of electrode thickness based on the electrochemical-thermal coupling model, Sustainable Energy & Fuels 3 (2019) 148 – 165.

[14]  梅文昕,王青松*,孙金华.基于电化学力耦合模型的锂离子电池充电过程中石墨颗粒的应力模拟,工程力学 37(S) (2020) 352-357.

[15]  梅文昕,段强领,王青山,李妍,李欣,朱金大,王青松.大型磷酸铁锂电池高温热失控模拟研究,储能科学与技术202110(01):202-209.

[16]  Zonghou Huang, Yue Zhang, Laifeng Song, Qiangling Duan, Jinhua Sun, Wenxin Mei*, Qingsong Wang*, Preventing effect of liquid nitrogen on the thermal runaway propagation in 18650 lithium ion battery modules, Process Safety and Environmental Protection 168 (2022) 42-53

[17]  Zhuangzhuang Jia, Laifeng Song, Wenxin Mei *, Yin Yu, Xiangdong Meng, Kaiqiang Jin, Jinhua Sun, Qingsong Wang*. The preload force effect on the thermal runaway and venting behaviors of large-format prismatic LiFePO4 batteries, Applied Energy 327 (2022) 120100,

[18]  Yue Zhang, Siyuan Cheng, Wenxin Mei *, Lihua Jiang, Zhuangzhuang Jia, Zhixiang Cheng, Jinhua Sun, Qingsong Wang*. Understanding of Thermal Runaway Mechanism of LiFePO4 Battery In-Depth by Three-level Analysis, Applied Energy 336 (2023) 120695.

[19]  Yin Yu, Zonghou Huang, Wenxin Mei *, Zhuangzhuang Jia, Laifeng Song, Qingsong Wang*, Preventing effect of different interstitial materials on thermal runaway propagation of large-format lithium iron phosphate battery module, Journal of Energy Storage, 63 (2023) 107082.

[20]  Yin Yu, Zhiyuan Li, Zesen Wei, Shiyao Chen, Zonghou Huang, Zheng Fang, Yuxuan Li, Junjie Wang, Wenxin Mei *, Qingsong Wang*, Enhancing battery module safety with insulation material: Hollow glass microspheres incorporating aerogel of varying particle sizes, Chemical Engineering Journal, 478 (2023) 147400.

[21]  Zhixiang Cheng, Chengdong Wang, Wenxin Mei *, Peng Qin, Junyuan Li, Qingsong Wang*, Thermal runaway evolution of a 280 Ah lithium-ion battery with LiFePO4 as the cathode for different heat transfer modes constructed by mechanical abuse, Journal of Energy Chemistry, 93 (2024) 32–45.

[22]  Yue Zhang, Laifeng Song, Jiamin Tian, Wenxin Mei *, Lihua Jiang, Jinhua Sun, Qingsong Wang*. Modeling the Propagation of Internal Thermal Runaway in Lithium-ion Battery, Applied Energy 362 (2024) 123004

[23]  Zhiyuan Li, Zhixiang Cheng, Yin Yu, Junjie Wang, Longbao Wang, Wenxin Mei *, Qingsong Wang*, Thermal runaway comparison and assessment between sodium-ion and lithium-ion batteries, Process Safety and Environmental Protection 193 (2025) 842-855

[24]  Anqi Teng, Yue Zhang, Lihua Jiang, Yue Zhang, Hongbin Dang, Chenchen Wang, Zheng Fang, Yong Liu, Xuefeng Wang, Huang Li, Wenxin Mei *, Qingsong Wang*, Revealing the thermal stability of sodium-ion battery from material to cell level using combined thermal-gas analysis,Journal of Energy Chemistry 103 (2025) 838-849

[25]  Zhiyuan Li, Yifeng Cheng, Kangjie Ding, Shuping Wang, Yin Yu, Junjie Wang, Zhixiang Cheng, Kaiqiang Jin, Wenxin Mei *, Qingsong Wang*, Experimental investigation on thermal runaway propagation of lithium-ion battery module under different trigger locations, Process Safety and Environmental Protection 198 (2025) 107166

[26]  Chaoshi Liu, Yong Liu, Zhixiang Cheng, Yuxuan Li, Pengjie Liu, Lin Liu, Yuanyuan Min, Qiangling Duan, Wenxin Mei *, Qingsong Wang*, Experimental study on the impact of safety valve venting pressure on thermal runaway in large-format lithium iron phosphate battery, Process Safety and Environmental Protection, 201 Part B (2025) 107563

[27]  Chenrui She, Chaoshi Liu, Yuxuan Li, Xiaoyang Wang, Hong Ye, Chunmei Zeng, Wenxin Mei*, Qingsong Wang*,A novel early warning method for thermal runaway of lithium-ion batteries based on mechanical stress signal, Process Safety and Environmental Protection, 201 Part B (2025) 107626, 2025-07-19 online

[28]  Zhixiang Cheng, Zhiyuan Li, Yuxuan Li, Yin Yu, Chaoshi Liu, Zhenwei Wu, Peiyu Duan, Huang Li, Wenxin Mei*, Qingsong Wang*, Atmosphere-regulated thermal runaway characteristics and multidimensional safety assessment of sodium-ion and lithium-ion batteries, eTransportation 26 (2025) 100475

专利:

[1]   王青松,梅文昕,段强领,孙金华,一种基于热-力耦合模型的锂离子电池放电过程中热应力和温度的确定方法,专利号ZL201910743313.9,授权日2022.10.28

[2]   王青松,梅文昕,孙金华,一种锂离子电池三维简化模型的仿真方法,专利号ZL201811637180.9,授权日2022.09.06

[3]   王青松,梅文昕,孙金华,一种基于电化学-力耦合模型的锂离子电池放电过程中电极颗粒间应力的确定方法,专利号ZL201910229805.6,授权日2020.05.12

[4]   王青松,梅文昕,孙金华,一种锂离子电池电极设计参数的优化方法,专利号ZL201811215319.0专利申请号201811172802.5,授权日2022.12.23

[5]   郭团;王青松;梅文昕;薛小斌;刘誌;韩喜乐;肖高智,储能装置检测系统、方法、设备及存储介质,专利号ZL202310843450.6,授权日20240809日。