傅婧
发布人: 星禧   发布时间: 2019-03-13    浏览次数:

博士

研究员

无机非金属材料系

博士/硕士生导师

联系方式:jingfu@dhu.edu.cn; 15221369537







研究方向

主要从事多维纳米功能材料的可持续新能源研究,包括:

  • 新型电池:金属空气电池、柔性电池、锌基二次电池等

  • 电化学催化:析氢、氧还原/析氧等

  • 碱性燃料电池及电化学传感器


教育及工作经历

2019.03-至今,东华大学,材料科学与工程学院,特聘研究员,博/硕导

2018.05-2018.12,加拿大滑铁卢大学,Mitacs博士后研究员(合作教授:陈忠伟院士)

2014.05-2018.05,加拿大滑铁卢大学,化学工程,理学博士(导师:陈忠伟院士)

2011.04-2014.04,沃尔沃汽车技术(上海)有限公司,底盘研发工程师

2008.09-2011.03,华东理工大学,环境工程,工学硕士(导师:乔锦丽教授和马建新教授)

2004.09-2008.07,东华理工大学,环境工程,工学学士

荣誉获奖

2017年国家优秀自费留学生奖学金

2016/2017年加拿大滑铁卢纳米中心研究奖

2016年加拿大安大略省研究生奖

2011年上海市普通高等学校优秀毕业生


近期代表论文

目前已发表SCI论文30余篇,总引用达1200余次,h-index 19

Google scholarhttps://scholar.google.ca/citations?user=ZyZHiNYAAAAJ&hl=en

ResearchGatehttps://www.researchgate.net/profile/Jing_Fu16

  1. Li, Y.,* Fu, J.,* Zhong, C., Wu, T., Chen, Z., Hu, W., Amine, K., Lu, J. (2019) Recent Advances in Flexible Zinc‐Based Rechargeable Batteries. Advanced Energy Materials, 9 (1), 1802605. (*equal contribution)

  2. Fu, J., Liang, R., Liu, G., Yu, A., Bai, Z., Yang, L., Chen, Z. W. (2018) Recent Progress in Electrically Rechargeable Zinc–Air Batteries. Advanced Materials, 1805230.

  3. Fu, J., Hassan, F. M., Zhong, C., Lu, J., Liu, H., Chen, Z. W. (2017) Defect Engineering of Chalcogen-Tailored Oxygen Electrocatalysts for Rechargeable Quasi-Solid-State Zinc Air Batteries.Advanced Materials, 29 (35), 1702526. (Research Highlight in the Advanced Science News)

  4. Fu, J., Zachary, P. C., Park, M. G., Chen, Z. W. (2017) Electrically rechargeable zinc-air batteries: progress, challenges and perspectives. Advanced Materials, 29 (7), 1604685.

  5. Fu, J., Hassan, F. M., Li, J., Lee, D. U., Ghannoum, A. R., Lui, G., Hoque, M. A., Chen, Z. W. (2016) Flexible rechargeable zinc-air batteries through morphological emulation of human hair array. Advanced Materials, 28 (30), 6421-6428. (Hot Paper and featured on the Frontispiece of this issue)

  6. Fu, J., Zhang, J., Song, X., Zarrin, H., Tian, X., Qiao, J., Rasen, L., Li, K., Chen, Z. W. (2016) A flexible solid-state electrolyte for wide-scale integration of rechargeable zinc-air batteries. Energy & Environmental Science, 9 (2), 663-670.

  7. Fu, J., Lee, D. U., Hassan, F. M., Yang, L., Bai, Z.Y., Park, M. G., Chen, Z. W. (2015) Flexible high-energy polymer-electrolyte-based rechargeable zinc-air batteries. Advanced Materials, 27 (37), 5617-5622. (Hot Paper and featured on the back cover of this issue)

  8. Wang, Y. *, Fu, J. *, Zhang, Y., Li, M., Hassan, F., Li, G., Chen, Z.W. (2017) Continuous Fabrication of MnS/Co Nanofibrous Air Electrode for Wide Integration of Rechargeable Zinc-Air Battery. Nanoscale, 9 (41), 15865-15872.

  9. Yu, T. W.*, Fu, J.*, Cai, R., Yu, A., Chen, Z. W. (2017) Nonprecious Electrocatalysts for Li–Air and Zn–Air Batteries. IEEE Nanotechnology Magazine, 11 (3), 29-55.

  10. Lee, D. U.*, Fu, J.*, Park, M.G., Liu, H., Kashkooli, A. G., Chen, Z. W. (2016) Self-Assembled NiO/Ni(OH)2 Nanoflakes as Active Material for High-Power and High-Energy Hybrid Rechargeable Battery. Nano letters, 16(3), 1794-1802.

主要著作

1Fu, J., Chen, Z. W. Metal-Air and Metal-Sulfur batteries: Fundamentals and Applications (Chapter 1: Zinc-air batteries: Fundamentals and Applications). (2016) CRC Press, Taylor & Francis (ISBN 9781482258530 - CAT # K24140).

招生方向

热忱欢迎热爱科研,动手能力强,并对纳米材料和新能源技术有浓厚兴趣的本科生、研究生和博士后加盟。课题组成员可以推荐到美国、加拿大等高校合作培养与交流。