承担 的主 要项 目及 成果 |
至今已在Nature Chemistry (23.193), Nature communication (11.878), Chemical Society Reviews (IF:40.443), Energy & Environmental Science (IF:33.250), Advanced Materials (IF:125.809), Advanced Energy Materials (IF:24.884), Advanced Functional Materials (IF:15.621), Angewandte Chemie Int. Ed. (IF:12.257), Journal of the American Chemical Society (IF:14.695), Nano Energy (IF:15.548)等国际顶尖期刊上以通讯作者或第一作者发表120多篇论文,其中SCI一区论文97篇、SCI二区论文21篇,ESI论文16篇;发表50多篇国际和国内专利、出版一部题为《纳米科学和电化学设备》的教科书;论文总引用超过9078次、H-index达50。 主持项目23项,其中韩国国家研究基金3项,韩国科学、咨讯通信技术和未来规划部项目7项,韩国贸易、工业和能源部项目6项,教育部项目1项,工业转化项目6项,项目经费逾2600万元。担任欧洲材料协会EMRS和欧洲化学协会ECS的理事,在国际学术会议上做大会报告和邀请报告48次。由于在能源转换和储存材料的研究成果,当选为首位韩国籍第三世界科学院(Academy of Science for Developing Worlds)青年联盟成员;2010年,获澳大利亚国际合作奖,入选世界马奎斯名人录;2012年,获世界顶级材料(WPM)科技大赛金奖;2014年,获韩国知识经济部世界超级材料技术奖;2015年当选为英国皇家化学学会会士并作为韩国代表。2019年当选为韩国科学院青年院士。 承担的科研项目 1 韩国国家研究基金,SnO2纳米材料研究及其在先进储能材料中的研究,72.89万元,主持。 2 韩国国家研究基金,具有生物相容性的无线充电电池中纳米结构阳极材料的研发,82.15 万元,主持。 3 韩国国家研究基金,基于高纵横比纳米材料纳米电池储能材料的研究(第一阶段),92.42万元,主持。 4 韩国教育部,基于高纵横比纳米材料纳米电池储能材料的研究(第二阶段),106.04万元,主持。 5 韩国科学、咨讯通信技术和未来规划部,基于高纵横比纳米材料纳米电池储能材料的研究(第三阶段),115.07 万元,主持。 6 韩国科学、咨讯通信技术和未来规划部,锂二次电池用多维纳米电极材料的研究, 233.72 万元,主持 主要科研成果 1. W. Lee, S. Muhammad, C. Sergey, H. Lee, J. Yoon, Y.-M. Kang*, W.-S. Yoon*, Advances in the Cathode Materials for Lithium Rechargeable Batteries, Angewandte Chemie International Edition 59(7) (2020) 2578-2605. 2. M. Park, C. Liang, T.H. Lee, D.A. Agyeman, J. Yang, V.W.-h. Lau, S.-I. Choi, H.W. Jang, K. Cho*, Y.-M. Kang*, Regulating the Catalytic Dynamics Through a Crystal Structure Modulation of Bimetallic Catalyst, Advanced Energy Materials 10(8) (2020) 1903225. 3. K. Zhang, D. Kim, Z. Hu, M. Park, G. Noh, Y. Yang, J. Zhang, V.W.-h. Lau, S.-L. Chou, M. Cho, S.-Y. Choi, Y.-M. Kang*, Manganese based layered oxides with modulated electronic and thermodynamic properties for sodium ion batteries, Nature Communications 10(1) (2019) 5203. 4. D. Kim, K. Zhang, M. Cho*, Y.-M. Kang*, Critical design factors for kinetically favorable P-based compounds toward alloying with Na ions for high-power sodium-ion batteries, Energy & Environmental Science 12(4)(2019) 1326-1333. 5. S.H. Min, M.R. Jo, S.Y. Choi, Y.I. Kim, Y.M. Kang*, A Layer‐Structured Electrode Material Reformed by a PO4‐O2 Hybrid Framework toward Enhanced Lithium Storage and Stability, Advanced Energy Materials 6(7) (2016) 1501717. 6. Mi RuJo, JaepyeongJung, Gi-HyeokLee, YunokKim, KyeongseSong, JunghoonYang, Ji SuChae, Kwang ChulRoh, Yong-IlKim, Won-SubYoon, Yong-Mook Kang*, Fe3O4 nanoparticles encapsulated in one-dimensional Li4Ti5O12 nanomatrix: An extremely reversible anode for long life and high capacity Li-ion batteries, Nano Energy 19 (2016) 246-256. 7. M. Pramanik, C. Li, M. Imura, V. Malgras, Y.M. Kang*, Y. Yamauchi*, Ordered mesoporous cobalt phosphate with crystallized walls toward highly active water oxidation electrocatalysts, Small 12(13) (2016) 1709-1715. 8. J. Shin, J. Yang, C. Sergey, M.S. Song, Y.M. Kang*, Carbon Nanofibers Heavy Laden with Li3V2(PO4)3 Particles Featuring Superb Kinetics for High‐Power Lithium Ion Battery, Advanced Science 4(9) (2017) 1700128. 9. E. Wang, W. Xiang, R. Rajagopalan, Z. Wu, J. Yang, M. Chen, B. Zhong, S.X. Dou*, S. Chou*, X. Guo*, Construction of 3D pomegranate-like Na3V2(PO4)3/conducting carbon composites for high-power sodium-ion batteries, Journal of Materials Chemistry A 5(20) (2017) 9833-9841. 10. J. Yang, S. Muhammad, M.R. Jo, H. Kim, K. Song, D.A. Agyeman, Y.-I. Kim, W.-S. Yoon*, Y.-M. Kang*, In situ analyses for ion storage materials, Chemical Society Reviews 45(20) (2016) 5717-5770. 11. K. Zhang, G.H. Lee, M. Park, W. Li, Y.M. Kang*, Recent developments of the lithium metal anode for rechargeable non‐aqueous batteries, Advanced Energy Materials 6(20) (2016) 1600811. 12. K. Zhang, M. Park, L. Zhou, G.H. Lee, W. Li, Y.M. Kang*, J. Chen*, Urchin‐Like CoSe2 as a high‐performance anode material for sodium‐ion batteries, Advanced Functional Materials 26(37) (2016) 6728-6735. 13. K. Zhang, M. Park, L. Zhou, G.H. Lee, J. Shin, Z. Hu, S.L. Chou, J. Chen, Y.M. Kang*, Cobalt‐Doped FeS2 Nanospheres with Complete Solid Solubility as a High‐Performance Anode Material for Sodium‐Ion Batteries, Angewandte Chemie International Edition 55(41) (2016) 12822-12826. 14. R. Choi, J. Jung, G. Kim, K. Song, Y.-I. Kim, S.C. Jung, Y.-K. Han*, H. Song*, Y.-M. Kang*, Ultra-low overpotential and high rate capability in Li–O2 batteries through surface atom arrangement of PdCu nanocatalysts, Energy & Environmental Science 7(4) (2014) 1362-1368. 15. Y.-M. Kang*, Y.-I. Kim, M.-W. Oh, R.-Z. Yin, Y. Lee, D.-W. Han, H.-S. Kwon, J.H. Kim, G. Ramanath*, Structurally stabilized olivine lithium phosphate cathodes with enhanced electrochemical properties through Fe doping, Energy & Environmental Science 4(12)(2011) 4978-4983.
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