
姓名:陈 龙
职称:教授,博士生导师
电子邮件:longchen@ecust.edu.cn
地址:华东理工大学徐汇校区新材料大楼911室
【个人简介】
2024.01-至今, 华东理工大学,化工学院,教授,李春忠教授团队
2021.01-2023.12, 华东理工大学,化工学院,特聘研究员,李春忠教授团队
2019.07-2020.12, 马里兰大学,化学与分子生物工程系,助理研究员
2016.11-2019.07, 马里兰大学,化学与分子生物工程系,博士后
2013.09-2016.06, 复旦大学,物理化学专业,博士
2010.09-2012.06, 复旦大学,化学领域,工程硕士
2006.09-2010.06, 苏州大学,化学专业,学士
【研究方向】
电化学储能基础和应用研究,研究兴趣包括:
1,低温锂离子、钠离子电池电解液设计与开发;
2,快速充电锂离子、钠离子电池电解液设计与开发;
3,高安全性锂离子、钠离子电池电解液设计与开发
4,液流电池电解液设计与开发
【主持项目】
[1]国家自然科学基金委,面上项目,基于低共熔电解液的高比能水系锂离子电池设计与界面研究,2025-01至2028-12,在研,主持
[2]国家自然科学基金委,优秀青年科学基金项目(海外),锂离子电池电解液,2023-01至2025-12,在研,主持
[3]上海市科委“探索者计划”项目,数据与机理融合驱动的锂离子电池电解液高通量筛选与实验验证研究,2023-11至2025-10,在研,主持
[4]国家自然科学基金委,青年科学基金项目,基于碳酸甲乙酯的弱溶剂化低温锂离子电池电解液设计及性能研究,2022-01至2024-12,主持
[5]上海市海外高层次人才引进计划,锂离子电池电解液界面研究,2021-01至2023-12,主持
[6]上海高校特聘教授(东方学者),高能量密度高安全锂离子电池,2021-01至2023-12,主持
【学术成果】
在Nat.Nanotech.、Nat.Energy、Joule、Chem、Nat.Commun.、Angew. Chem. Int. Ed.、ACS Energy Lett.等期刊发表学术论文60余篇,被引超过12500 次,H 因子46。
1. Weicheng. Xia†, Kunchi. Xie†(† equal contribution), Shang. Gao, Zhen Song*, Long Chen*, Chunzhong Li*. Multidentate Chelating Ligands Enable High‐Performance Zinc-Bromine Flow Batteries. Angew. Chem. Int. Ed., e202418669 (2024).
2. Yiting Lin, Feng Su, Jiaqing Jiang, Haipeng You, Menglei Yao, Cheng Lian*, Long Chen*, Honglai Liu, Chunzhong Li*. Copper nitrate enables high-performance Lithium-ion batteries at low temperature. Energy Storage Materials, 70, 103484 (2024).
3. Xiaotong Fan†, Kai Huang†, Long Chen†*(† equal contribution), Haipeng You, Menglei Yao, Hao Jiang, Ling Zhang, Cheng Lian*, Xiangwen Gao* and Chunzhong Li*. High Power- and Energy-density Supercapacitors through the Chlorine Respiration Mechanism. Angew. Chem. Int. Ed. e202215342 (2022).
4. Singyuk Hou†, Long Chen†*, Xiulin Fan† († equal contribution), Xiaotong Fan, Xiao Ji, Boyu Wang, Chunyu Cui, Ji Chen, Chongyin Yang, Wei Wang, Chunzhong Li & Chunsheng Wang*. High-energy and low-cost membrane-free chlorine flow battery. Nature Communications 13, 1281 (2022).
5. Long Chen†, Longsheng Cao† († equal contribution), Xiao Ji, Singyuk Hou , Qin Li, Ji Chen, Chongyin Yang, Nicolas Eidson, Chunsheng Wang*. Enabling safe aqueous lithium-ion open batteries by suppressing oxygen reduction reaction. Nature Communications 11, 2638 (2020).
6. Long Chen†, Jiaxun Zhang†, Qin Li† († equal contribution), Jenel Vatamanu, Xiao Ji, Travis P. Pollard, Chunyu Cui, Singyuk Hou, Ji Chen, Chongyin Yang, Lin Ma, Michael S. Ding, Mounesha Garaga, Steve Greenbaum, Hung-Sui Lee, Oleg Borodin*, Kang Xu*, Chunsheng Wang*. A 63 m Superconcentrated Aqueous Electrolyte for High-Energy Li-Ion Batteries. ACS Energy Letters 5 (3), 968–974 (2020).
7. Xiulin Fan†, Xiao Ji†, Long Chen† († equal contribution), Ji Chen, Tao Deng, Fudong Han, Jie Yue, Nan Piao, Ruixing Wang, Xiuquan Zhou, Xuezhang Xiao, Lixin Chen & Chunsheng Wang*. All-temperature batteries enabled by fluorinated electrolytes with non-polar solvents. Nature Energy 4, 882–890 (2019).
8. Long Chen†, Xiulin Fan†, Enyuan Hu† († equal contribution), Wei Xia, Xiao Ji, Ji Chen, Singyuk Hou, Tao Deng, Jing Li, Dong Su, Xiaoqing Yang, Yangxing Li, Chunsheng Wang*. Achieving high-energy density through increasing the output voltage: a highly reversible 5.3 V battery. Chem 5(4), 896–912 (2019).
9. Long Chen†, Xiulin Fan†, Xiao Ji† († equal contribution), Ji Chen, Singyuk Hou, Chunsheng Wang*. High-Energy Li Metal Battery with Lithiated Host. Joule 3(3), 732–744 (2019).
10. Xiulin Fan†, Long Chen† († equal contribution), Oleg Borodin, Xiao Ji, Ji Chen, Singyuk Hou, Tao Deng, Jing Zheng, Chongyin Yang, Sz-Chian Liou, Khalil Amine,* Kang Xu,* Chunsheng Wang*. Non-flammable Electrolyte Enables Li-Metal Batteries with Aggressive Cathode Chemistries. Nature Nanotechnology 13 (8), 715-722 (2018).
11. Long Chen, Junwei Lucas Bao, Xiaoli Dong, Donald G. Truhlar, Yonggang Wang*, Chunsheng Wang, Yongyao Xia*. Aqueous Mg-ion Battery Based on Polyimide Anode and Prussian Blue Cathode. ACS Energy Letters 2 (5), 1115–1121 (2017).
12. Long Chen, Xiaoli Dong, Yonggang Wang* and Yongyao Xia*. Separating Hydrogen and Oxygen Evolution in Alkaline Water Electrolysis Using Nickel Hydroxide. Nature Communications 7, 11741 (2016).