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天津大学材料科学与工程学院导师教师师资介绍简介-陈亚楠

本站小编 Free考研考试/2020-09-12


陈亚楠 副教授
Email: yananchen@tju.edu.cn
研究所:先进金属材料研究所

教育背景:
· 2012.09-2017.01 北京科技大学/美国马里兰大学 冶金工程/材料科学与工程专业 博士
· 2008.09-2012.06 北京科技大学理科实验班/冶金工程专业 学士
工作经历:
· 2017.01-2019.05 清华大学生命科学学院/高精尖创新中心卓越****
· 2019.05-至今 天津大学材料学院副教授
研究方向
· 纳米材料超快速合成
· 能源存储(锂/钠/钾离子电池,空气电池等)
· 能源转换(电催化)
· 冷冻电镜

承担项目
· 国家自然科学基金重大研究计划(培育项目),在研,主持
· 天津大学北洋****英才计划,在研,主持
标志性成果
主要从事新型材料制备及其在能源、环境、生物中的应用。现已在Nature Energy、Nature Comm.、Science Advances、JACS、PNAS、Materials Today、Adv. Mater.等高影响力期刊上发表研究论文50余篇,以第一/通讯作者在Nature Comm. (2),JACS, Adv. Mater.,Materials Today (2), Nano Letters (3),AEM (4),ESM (2), JMCA (2), Small (2), Nano Energy等顶级期刊发表研究论文30余篇,论文引用2400余次,4篇论文入选高被引论文。申请美国专利4项,国内专利7项。担任多种国际著名学术期刊,如Matter, Adv. Mater., Nano Letters, AFM, ESM, Small, Nano Research, ACS AMI, Electrochimica Acta等20多个学术期刊的审稿人,以及杂志Frontiers in Energy Research客座编辑,Chinese Chemical Letters青年编委。
代表性论文:
1. Chen, Y., Wan, J.; Zhu, S.; Luo, W.; Wang, Y.; Li, Y.; Hitz, E.M.; Yao, Y.; Dai, J.; Wan, J.; Danner, V.A; Hu, L.*, Ultra-fast self-assembly and stabilization of reactive nanoparticles in reduced graphene oxide,Nature Communications, 2016, 7, 12332.
2. Liu, N., Zhang, J., Chen, Y.*, Liu, C., Zhang, X., Xu, K., Wen, J., Luo, Z., Chen, S., Gao, P., Jia, K., Liu, Z., Peng, H.*, Wang, H.*, Bioactive ligands functionalized monolayer graphene for high resolution cryo-EM.Journal of the American Chemical Society, 2019.
3. Chen, Y., Wang, Y., Zhu, S., Fu, K., Han, X., Wang, Y., Hu, L.*, Nanomanufacturing of graphene nanosheets through nano-hole opening and closing.Materials Today, 2018.
4. Chen, Y., Fu, K.; Zhu, S.; Luo, W.; Wang, Y.; Li, Y.; Hitz, E.M.; Yao, Y.; Dai, J.; Wan, J.; Danner, V.A; Hu, L.*, Reduced graphene oxide with ultra-high conductivity as Li-ion battery current collectors,Nano Letters, 2016, 16 (6), 3616–3623.
5. Chen, Y., Luo, W.; Fu, K.; Dai, J.; Lacey, S.; Li, T.; Wan, J.; Han, X.; Bao, Y.; Hu, L.*, Rapid, in Situ Synthesis of High Capacity Battery Anodes through High Temperature Radiation-Based Thermal Shock,Nano Letters, 2016, 16, 5553?5558.
6. Chen, Y., Xu, S., Li, Y., Jacob, R. J., Kuang, Y., Liu, B., Hu, L.*, FeS2 Nanoparticles Embedded in Reduced Graphene Oxide toward Robust, High-Performance Electrocatalysts,Advanced Energy Materials, 2017, 7 (19), **.
7. Liu, Y., Wang,J.,Ding,Z.,Yao,P.,Zhang, S., Wu, J.*, Chen, Y.*, 3D cube-maze-like Li-rich layered cathodes assembled from 2D porous nanosheets for enhanced cycle stability and rate capability of lithium-ion batteries. Advanced Energy Materials, 2019.
8. Chen, Y., Luo, W.; Carter, M.; Zhou, L.; Dai, J.; Fu, K.; Lacey, S.; Li, T.; Wan, J.; Han, X.; Bao, Y.; Hu, L.*, Organic electrode for non-Aqueous potassium-ion batteries,Nano Energy, 2015, 18, 205-211.
9. Chen,Z.,Liu,Y.,Liu,C.,Zhang, J.,Chen, Y.*, Hu,W.,Deng, Y.*, Engineering the Metal/Oxide Interface of Pd Nanowire@CuOx Electrocatalysts for Efficient Alcohol Oxidation Reaction. Small, 2019.
10. Dong, C., Guo, L., He, Y., Qian, Y.*,Chen, Y.*, Xu, L.*, Sandwich-like Ni2P Nanoarray/Nitrogen-Doped Graphene Nanoarchitecture as a High-Performance Anode for Sodium and Lithium Ion Batteries,Energy Storage Materials, 2018, 15, 234-241.
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