闫岩,博士,助理教授。
联系方式:
办公地点:南京市新模范马路5号 南京工业大学丁家桥校区
Email:iamyyan@njtech.edu.cn
教育经历
2007/09-2012/07 中国科学技术大学 化学与材料学院 博士,导师:钱逸泰院士
2003/09-2007/07 聊城大学 化学与化工学院 学士
工作经历
2015/05 – 2018/3 南京工业大学 先进材料研究院 助理教授
2015/05 – 2018/3 南京工业大学 2011协同创新中心
2012/07-2015/05 齐鲁工业大学 材料科学与工程学院 讲师
科研工作
长期从事无机微纳米材料的合成及其在能源存储方面的研究工作,包括锂离子电池、钠离子电池、锂硫电池、水系锌离子电池以及电催化等。迄今为止,已在Angewandte Chemie International Edition, Nano Letters, Journal of Power Sources, Chemical Engineering Journal, Journal of Energy Chemistry, Materials Chemistry Frontiers, Applied Surface Science等主流期刊参与发表微纳米储能材料相关的论文二十余篇。其中以第一作者/通讯作者发表论文9篇。
代表性论文
1. Kang Hu, Ying Ding, Yao Zhang, Longwei Ke, Huan Shang, Yan Yan*, Huijuan Lin, Kun Rui, and Jixin Zhu*. Metallic Vanadium Trioxide Intercalated with Phase Transformation for Advanced Aqueous Zinc-Ion Batteries. Journal of Energy Chemistry. 2021, Accepted Manuscript. DOI: 10.1016/j.jechem.2021.02.014.
2. Yan Yan#, Longwei Ke #, Ying Ding, Yao Zhang, Kun Rui, Huijuan Lin, and Jixin Zhu*. Recent advances in Cu-based catalysts for electroreduction of carbon dioxide. Materials Chemistry Frontiers. 2021, 5, 2668.
3. Jingfa Li*, Zhihao Niu, Yulu Chen, Qihao Zhou, Yan Yan*, Cong Guo, and Min Li. Mn3(PO4)2/rGO as dual-function polysulfide inhibitor through oxygen deficiencies and polar sites for lithium sulfur batteries. Applied Surface Science. 2020, 521, 146425.
4. Jingfa Li*, Nan Shan, Lei Wang, Qihao Zhou, Yan Yan*, Min Li, and Cong Guo, Surface engineering Co-B nanoflakes on Mn0.33Co0.67CO3 microspheres as multifunctional bridges towards facilitating Li+ storing performance. Ceramics International. 2020, 46,19873.
5. Ling Xie#, Yan Yan#, Huijuan Lin, Kun Rui, Aoming Huang, Min Du, Yu Shen, and Jixin Zhu*. General approach to single and hybrid metal oxides fiber structures for high performance lithium ion batteries. Chemistry-An Asian Journal. 2020, 15, 1105.
6. Yan Yan, Zhongyuan Ma, Huijuan Lin, Kun Rui, Qiao Zhang, Qingqing Wang, Min Du, Desheng Li, Yao Zhang, Jixin Zhu*, and Wei Huang. Hydrogel self-templated synthesis of Na3V2(PO4)3@C@CNT porous network as ultrastable cathode for sodium-ion batteries. Composites Communications. 2019, 13, 97.