1. W. Tang, Y. Chen* et al. Defect-Engineered Co3O4@Nitrogen-Deficient Graphitic Carbon Nitride as an Efficient Bifunctional Electrocatalyst for High-Performance Metal-Air Batteries. Small 2022, DOI: 10.1002/smll.202202194(1区Top期刊)(*通讯作者)(Hot Paper) 2.T. Ji, Y. Chen* et al. Crystallization Regulation of Solution-processed Two-dimensional Perovskite Solar Cells. Journal of Materials Chemistry A, 2022, DOI: 10.1039/D2TA02574D (1区Top期刊)(*通讯作者)(Hot Paper) 3. S. Pan, Y. Chen* et al. Halide Perovskite Materials for Photo(Electro)Chemical Applications: Dimensionality, Heterojunction, and Performance. Advanced Energy Materials 2021, 2004002(1区Top期刊)(*通讯作者)(MaterialsView等科研媒体对该成果进行了亮点报道) 4. X. Zhang, Y. Chen* et al. Photothermal effect enables markedly enhanced oxygen reduction and evolution activities for highperformance Zn–air batteries. Journal of Materials Chemistry A 2021, 9, 19734(1区Top期刊)(*通讯作者)(Hot Paper) 5. X. Hu, Y. Chen* et al. Photothermal effect of carbon quantum dots enhanced photoelectrochemical water splitting of hematite photoanodes. Journal of Materials Chemistry A 2020, 8, 14915(1区Top期刊)(*通讯作者) 6. M. Zhao, Y. Chen* et al. Photothermal Effect-Enhanced Photoelectrochemical Water Splitting of a BiVO4 Photoanode Modified with Dual-Functional Polyaniline. Journal of Materials Chemistry A 2020, 8, 15976(1区Top期刊)(*通讯作者) 7. Y. Chen, Z. Lin* et al. Resolving optical and catalytic activities in thermoresponsive nanoparticles by permanent ligation with temperature-sensitive polymers. Angewandte Chemie International Edition. 2019, 58, 11910(1区Top期刊)(当期VIP) 8. Y. Chen, G. Zhang*, and Z. Lin* et al. Light-enabled reversible self-assembly and tunable optical properties of stable hairy nanoparticles, Proceedings of the National Academy of Sciences of the United State of America. 2018, 115, E1391(1区Top期刊)(美国自然科学基金新闻NSF news、佐治亚理工学院新闻、Eurekalert、Ecancer、Technology Networks、Science Newsline、Phys.org、Nanowerk、Newswise、BrightSurf等多家科研媒体对该成果进行了亮点报道) 9. Y. Chen, G. Zhang*, and Z. Lin* et al. Hairy uniform permanently-ligated hollow nanoparticles with precise dimension control and tunable optical properties, Journal of the American Chemical Society. 2017, 139, 12956(1区Top期刊)(X-MOL等科研媒体对该成果进行了亮点报道) 10. Y. Chen, G Zhang*, and Z. Lin* et al. Precisely size-tunable monodisperse hairy plasmonic nanoparticles via amphiphilic star-like block copolymers, Small. 2016, 12, 6714(1区Top期刊)(封面;Small 2016年11月热点文章排行榜Top 10) 参加会议 1. Precisely size-tunable monodisperse hairy plasmonic nanoparticles via amphiphilic star-like block copolymers,美国材料研究学会(MRS)会议,菲尼克斯,Poster,2017.04 2. 美国佐治亚理工学院聚合物会议(SPN)海报大赛,亚特兰大,评审,2018.03 3. Light-enabled reversible self-assembly and tunable optical properties of stable hairy nanoparticles,美国化学会(ACS)会议,波士顿,口头报告,2018.08 4. 美国佐治亚理工学院聚合物会议(SPN)海报大赛,亚特兰大,评审,2019.03 5. 美国材料研究学会(MRS)会议海报大赛,亚特兰大,评审,2019.04 6. Resolving optical and catalytic activities in thermoresponsive nanoparticles by permanent ligation with temperature-sensitive polymers, 2019 国际能源存储与转化功能材料大会,温州,口头报告,2019.11 |