付洋,教授,博士生导师,国家级高层次青年人才(海外)。本科与硕士毕业于浙江大学光电科学与工程学院,博士毕业于香港城市大学材料科学与工程学院,随后于香港城市大学能源与环境学院从事博士后研究。2026年3月加入东南大学能源与环境学院,担任青年首席教授。致力于光、热、电跨尺度能量转换与利用的前沿交叉研究,发展基于多物理场耦合协同的先进智能热管理技术。具体研究方向包括:被动辐射制冷及热辐射调控;电子器件热管理;太阳能光热利用;低碳可持续制造技术;智能材料逆向设计与优化等。迄今在相关领域已发表SCI论文20余篇,其中以第一/通讯(含共同)作者身份在Nature Sustainability,Nature Materials,Science Advances等期刊发表论文10余篇。相关成果获得2025中国光学十大进展提名奖、2023日内瓦发明展金奖等。担任Nano-Micro Letters青年编委,Processes特刊客座编辑等。
个人主页:https://www.yfu-research.com/
课题组招收硕士/博士研究生 3–4 名,并长期招收博士后及科研助理。欢迎有志于探索前沿交叉科学与创新性应用的学生/青年学者加入团队,一起做有趣有用的研究!有意者请联系 yang.fu@seu.edu.cn。
1) Fu, Y., & Tso, C. Y. (2025). Coloured composites harness photoluminescence for radiative cooling. Nature Sustainability, 8(11), 1252-1253. (JCR 一区; IF=26.2)
2) Fu, Y., Ma, X., Zhang, X., Li, Z., Wang, C., Lin, K., … & Tso, C. Y., (2025) Photoluminescence-Driven Radiative Cooling for Aesthetic and Urban Comfort. Nature Sustainability, Accepted. (JCR 一区; IF=26.2)
3) Fu, Y., & Tso, C. Y. (2025, August). Subambient Colored Radiative Cooling Using Photoluminescence. In 11th World Congress on Mechanical, Chemical, and Material Engineering (MCM 2025) (pp. HTFF-143). Avestia Publishing.
4) Gao, Z.†, Fu, Y.†, Zhang, Q., Li, J., Li., Z., Guo, G., … & Yu, X., (2025) Plasmonic printing of high-performance metal oxide electronics under room temperature. Nature Materials,1-10. (JCR 一区; IF=37.2)
5) Lin, K.†, Fu, Y.†, Li, H.†, Li, X.†, Chen, J.†, Chen, S.†, Bai, S.†, ... & Tso, C. Y. (2025). Exploring real-world applications of passive radiative cooling for sustainability. Cell Reports Physical Science, 6(2). (JCR 一区; IF=7.9)
6) Li, J.†, Fu, Y.†, Zhou, J., Yao, K., Ma, X., Gao, S., ... & Yu, X. (2023). Ultrathin, soft, radiative cooling interfaces for advanced thermal management in skin electronics. Science advances, 9(14), eadg1837. (JCR 一区; IF=11.7)
7) Fu, Y.†, Qing, Y. M.†, Li, Z., Zayats, A. V., & Lei, D. (2022). Tale of Two Resonances: Waveguide–Plasmon Coupling and High Q-Factor Engineering on the Nanoscale. ACS Photonics, 10(1), 2-12. (封面文章) (JCR 一区; IF=6.5)
8) An, Y.†, Fu, Y.†, Dai, J. G., Yin, X., & Lei, D. (2022). Switchable radiative cooling technologies for smart thermal management. Cell Reports Physical Science, 3(10). (JCR 一区; IF=7.9)
9) Ma, X.†, Fu, Y.†, Portniagin, A., Yang, N., Liu, D., Rogach, A. L., ... & Lei, D. (2022). Effects of Stokes shift and Purcell enhancement on fluorescence-assisted radiative cooling. Journal of Materials Chemistry A, 10(37), 19635-19640. (JCR 一区; IF=10.8)
10) Fu, Y., An, Y., Xu, Y., Dai, J. G., & Lei, D. (2022). Polymer coating with gradient‐dispersed dielectric nanoparticles for enhanced daytime radiative cooling. EcoMat, 4(2), e12169. (JCR 一区; IF=10.7)
11) Fu, Y., Yang, J., Su, Y. S., Du, W., & Ma, Y. G. (2019). Daytime passive radiative cooler using porous alumina. Solar energy materials and solar cells, 191, 50-54. (JCR 二区; IF=6.3)
