博彩导航

鄢蕾

2023年08月22日 14:53  点击:[]


一、基本信息

   名:鄢蕾

   称:助理研究员

办公地址:宁波大学北校区3307

联系方式:18817738360yanlei@daohangbc.com

主要研究方向:

1.储能材料和储能技术的研究,包括锂离子电池、钠离子电池、锌离子电池、电化学电容等;

2.电池材料热稳定性、电池反应机理的研究。

个人简介(限200字以内)

鄢蕾,助理研究员; 2021年复旦大学博士;2021年引进至宁波大学,长期从事新型储能材料和储能技术的研究。主持承担包括国家自然科学基金、浙江省自然科学基金、宁波市基金等项目;已发表SCI论文20余篇,其中包括J. Am. Chem. Soc., Angew. Chem. Int. Ed., ACS Energy Lett., Energy Storage Mater., J. Mater. Chem. A, Chem. Eng.J.等国际重要期刊

三、教学与课程

四、研究与成果请按照年份由近及远撰写

(一)部分承担课题

1. 基于有机-无机复合正极的水系锌电池,国家自然科学基金,起止年限:2023年至2026年,主持;

2. 基于有机物电极的水系质子电池的机理研究及其性能优化,浙江省自然科学基金,起止年限:2023年至2026年,主持;

(二)主要研究成果(论文/著作/专利):

1.代表论文:

1. L. Yan, Y. Zhang, Z.G. Ni, Y. Zhang, J. Xu, T.Y. Kong, J.H. Huang, W. Li, J. Ma, Y.G. Wang*, Chemically Self-Charging Aqueous Zinc-Organic Battery, Journal of the American Chemical Society, 143 (2021) 15369-5377.

2. L. Yan*, Q. Zhu, Y. Qi, J. Xu, Y. Peng, J. Shu, J. Ma, Y.G. Wang*, Towards High-Performance Aqueous Zinc Batteries via a Semi-Conductive Bipolar-Type Polymer Cathode, Angewandte Chemie International Edition, 2022, e202211107.

3. L. Yan, J.H. Huang, Z.W. Guo, X.L. Dong, Z. Wang, Y.G. Wang*, Solid-State Proton Battery Operated at Ultralow Temperature, ACS Energy Letters, 5 (2020) 685-691.

4. L. Yan, J. Shu*, C.X. Li, X. Cheng, H.J. Zhu, H.X. Yu, C.F. Zhang*, Y. Zheng, Y. Xie, Z.P. Guo*, W3Nb14O44 nanowires: Ultrastable lithium storage anode materials for advanced rechargeable batteries, Energy Storage Materials, 16 (2019) 535-544. 5. L. Yan, X. Cheng, H.X. Yu, H.J. Zhu, T.T. Liu, R.T. Zheng, R.F. Zhang, M. Shui, J. Shu*, Ultrathin W9Nb8O47 nanofibers modified with thermal NH3 for superior electrochemical energy storage, Energy Storage Materials, 14 (2018) 159-168.

6. L. Yan, J.H. Huang, X.L. Dong, Z.W. Guo, Z. Wang, Y.G. Wang*, Energizing hybrid supercapacitors by using Mn2+-based active electrolyte, Journal of Materials Chemistry A, 8 (2020) 15051-15057.

7. L. Yan, H. Lan, H. X. Yu, S. S. Qian, X. Cheng, N. B. Long, R. F. Zhang, M. Shui, J. Shu*, Electrospun WNb12O33 nanowires: superior lithium storage capability and their working mechanism, Journal of Materials Chemistry A, 5 (2017) 8972-8980.

8. L. Yan, S. S. Qian, H. X. Yu, P. Li, H. Lan, N. B. Long, R. F. Zhang, M. Shui, J. Shu*, Carbon-Enhanced Electrochemical Performance for Spinel Li5Cr7Ti6O25 as a Lithium Host Material, ACS Sustainable Chemistry & Engineering, 5 (2017) 957-964.

8. L. Yan, H. X. Yu, S. S. Qian, P. Li, X. T. Lin, Y. Y. Wu, N. B. Long, M. Shui, J. Shu*, Novel spinel Li5Cr9Ti4O24 anode: Its electrochemical property and lithium storage process, Electrochimica Acta, 209 (2016) 17-24.



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