

王长虹
- 职务:助理教授
- 邮箱:cwang@eitech.edu.cn
- 联系电话:
- 课题组网站:https://wang.eitech.edu.cn/
- 学术荣誉:2022,Banting Postdoctoral Fellowship (加拿大最顶级的博士后奖金)
2022,第二届BTR新能源科技竞赛一等奖
2022,第三届新威学生论文先进奖
2020,国家优秀自费留学奖学金
2018-2020, MITACS Accelerate Scholarship
背景介绍
研究领域
重点从事全固态电池关键材料与技术,主要包含以下几个方向
(1)新型固态电解质创制
(2)全固态电芯试制
(3)全固态锂硫电池
教育背景
- 2016/09-2020/01:博士(专业:机械与材料工程),加拿大西安大略大学
- 2011/09-2014/06:硕士(专业:材料工程),中国科学技术大学
- 2007/09-2011/06:学士(专业:应用化学),安徽科技学院
工作经历
- 2023—至今, 宁波东方理工大学(暂名)助理教授,副研究员,博士生导师
- 2022—2023, 加拿大西安大略大学,访问研究员 (指导老师:孙学良院士)
- 2022—2023, 美国马里兰大学,班廷学者(指导老师:王春生教授)
- 2021—2022, 加拿大GLABAT Solid-State Battery Inc.,研发总监(R&D director)
- 2020—2021, 加拿大GLABAT Solid-State Battery Inc.,高级科学家 (Senior Scientist)
- 2014—2016, 新加坡科技与设计大学,研究助理(Research Assistant)
学术经历
- 2023—至今, 宁波东方理工大学(暂名)助理教授,副研究员,博士生导师
- 2022—2023, 加拿大西安大略大学,访问研究员 (指导老师:孙学良院士)
- 2022—2023, 美国马里兰大学,班廷学者(指导老师:王春生教授)
获奖情况及荣誉
- 2022,Banting Postdoctoral Fellowship (加拿大最顶级的博士后奖金)
- 2022,第二届BTR新能源科技竞赛一等奖
- 2022,第三届新威学生论文先进奖
- 2020,国家优秀自费留学奖学金
- 2018-2020, MITACS Accelerate Scholarship
代表性论著
总体情况
已发表SCI论文98篇,其中以第一作者和通讯作者(含共同)在Nat. Chem. Eng., Nat. Commun.(2篇), Sci. Adv.(2篇), Joule(2篇), Matter, Adv. Mater.(2篇), Angew. Chem. Int. Ed. (3篇), Energy & Environmental Science(3篇)等国际权威期刊发表论文37篇,论文总引用以超过8100余次,个人H-index=51。申请中国及国际专利13件(授权7件)。
论著信息及引用数据:
Google Scholar: https://scholar.google.com/citations?user=brq6AJcAAAAJ&hl=en
Web of Science:
https://www.webofscience.com/wos/author/record/AAV-4047-2021
ScholarGPS: https://scholargps.com/scholars/67678732611238/changhong-wang
10篇代表作(*表示通讯作者)
1)J-T Kim‡, X. Hao‡, C. Wang*, and X. Sun*. Cathode Materials for Single-Phase Solid-Solid Conversion Li-S Batteries. Matter. 2023, doi: https://doi.org/10.1016/j.matt.2022.11.019.
2)C. Wang, T. Deng, X. Fan, M. Zheng, R. Yu, Q. Lu, H. Duan, H. Huang, C. Wang, X. Sun. Identifying Soft Breakdown in All-Solid-State Lithium Battery. Joule, 2022, 6, 8, 1770-1781. https://doi.org/10.1016/j.joule.2022.05.020.
3)C. Wang, J. Liang, J. Kim, X. Sun*. Prospects of Halide-based All-Solid-State Batteries: From Materials Design to Practical Application. Science Advances. 2022, 8,36, DOI: 10.1126/sciadv.adc9516.
4)C. Wang, J-T Kim, C. Wang, and X. Sun*. Progress and Prospects of All-Solid-State Pouch Cells with Inorganic Solid-State Electrolytes. Advanced Materials. 2022, DOI: https://doi.org/10.1002/adma.202209074
5)C. Wang‡, R. Yu‡, H. Duan‡, Q. Lu, Q. Li, K. Adair, D. Bao, Y. Liu, R. Yang, J. Wang*, S. Zhao*, H. Huang*, X. Sun*. Solvent-Free Approach for Interweaving Freestanding and Ultrathin Inorganic Solid Electrolyte Membranes, ACS Energy Letters, 2022, 7, 410-416. DOI: 10.1021/acsenergylett.1c02261.
6)C. Wang, K. Adair, X. Sun*. All-Solid-State Lithium Battery with Sulfide Electrolyte: Understanding Interfacial Ion and Electron Transport, Accounts of Materials Research, 2022, 3, 1, 21–32, doi: 10.1021/accountsmr.1c00137.
7)C. Wang‡, J. Liang‡, J. Luo, J. Liu, X. Li, F. Zhao, R. Li, H. Huang, S. Zhao, L. Zhang, J. Wang*, X. Sun*. A Universal Wet-Chemistry Synthesis of Solid-State Halide Electrolytes for High-Performance All-Solid-State Lithium Metal Batteries. Science Advances, 7, eabh1896 (2021). DOI: 10.1126/sciadv.abh1896
8)C. Wang, J. Liang, Y. Zhao, M. Zheng, X. Li, X. Sun*. All-Solid-State Lithium Metal Batteries Enabled by Sulfide Electrolytes: from Fundamental Study to Practical Engineering Design. Energy Environmental Science, 2021, 14, 2577-2619.
9)C. Wang‡, S. Hwang‡, M. Jiang‡, J. Liang, Y. Sun, K. Adair, M. Zheng, S. Mukherjee, X. Li, R. Li, H. Huang, S. Zhao, L. Zhang, S. Lu, J. Wang, C. V. Singh,* D. Su,* X. Sun*. Deciphering Interfacial Chemical and Electrochemical Reaction Mechanism of Sulfide-based All-Solid-State Batteries. Advanced Energy Materials, 2021, 2100210.
10)C. Wang, K. Adair, J. Liang, X. Li, Y. Sun, X. Li, J. Wang, Q. Sun, F. Zhao, X. Lin, R. Li, H. Huang, L. Zhang, R. Yang, S. Lu, X. Sun*. Solid‐State Plastic Crystal Electrolytes: Effective Protection Interlayers for Sulfide‐Based All‐Solid‐State Lithium Metal Batteries, Advanced Functional Materials. 2019, 29, 1900392.