个人简介:2022年12月获得武汉大学材料科学与工程专业博士学位(导师:闵杰教授),2023年1月就职于武汉大学高等研究院任特聘副研究员。主要从事高性能稳定的有机太阳能光电器件构筑、表征以及材料与器件物理的研究。近五年,以第一作者和通讯作者发表论文40余篇。包括Nature Energy( 1 篇),Joule( 5 篇),Advanced Materials( 4 篇),Energy & Environmental Science( 7 篇),Angewandte Chemie International Edition( 1 篇),Advanced Energy Materials( 3 篇),Advanced Functional Materials( 3 篇)等。其中12篇入选ESI高被引论文,7篇入选ESI热点论文,论文总引用6800余次,H指数 46,入选2023年度“全球前2%科学家榜单”,申请国家专利三项,担任Energy Materials和Materials Reports Energy期刊青年编委。
代表性论文:
https://www.researchgate.net/profile/Rui-Sun-89
https://scholar.google.com/citations?hl=zh-CN&user=kFtL9I4AAAAJ&view_op=list_works&sortby=pubdate
1. R. Sun, T. Wang, X. Yang, Y. Wu, Y. Wang, Q. Wu, M. Zhang, C. Brabec, Y. Li and J. Min*. High-speed sequential deposition of photoactive layer for organic solar cell manufacturing process. Nat. Energy, 2022. 7, 1087-1099.
2. R. Sun, X. Yuan, X. Yang, Y. Wu, Y. Shao, X. Wu, C. J. Brabec and J. Min*. Cost-efficient recycling of organic photovoltaic devices. Joule, 2024, Accepted.
3. X. Yang, Y. Gao, L.-Y. Xu, X. Wu, X. Chen, Y. Shao, S. Liu, J. Xia, R. Sun* and J. Min*. Efficient and stable all-small-molecule solar cells enabled by incorporating a designed giant molecule acceptor. Energy Environ. Sci., 2024, Accepted.
4. Y. Shao, Y. Gao, R. Sun*, X. Yang, M. Zhang, S. Liu and J. Min*. A High-performance organic photovoltaic system with versatile solution processability. Adv. Mater., 2024, Accepted.
5. L.-Y. Xu, W. Wang, X. Yang, S. Wang, Y. Shao, M. Chen, R. Sun* and J. Min*. Real-time monitoring polymerization degree of organic photovoltaic materials toward no batch-to-batch variations in device performance. Nat. Commun., 2024, 15, 1248.
6. S. Wang, L.-Y. Xu, B. Xiao, M. Chen, M. Zhang, W. Gao, B. Xiao, A. K. Y. Jen, R. Yang, J. Min* and R. Sun*. Designing dithieno-benzodithiophene-based small molecule donors for thickness-tolerant and large-scale polymer solar cells. Energy Environ. Sci., 2024, 17, 2610-2620.
7. Y. Gao, X. Yang, R. Sun*, L.-Y. Xu, Z. Chen, M. Zhang, H. Zhu and J. Min*. All-small-molecule organic solar cells with 18.1% efficiency and enhanced stability enabled by improving light harvesting and nanoscale microstructure. Joule, 2023, 7, 2845-2858.
8. X. Yang, Y. Shao, S. Wang, M. Chen, B. Xiao, R. Sun* and J. Min*. Processability considerations for next-generation organic photovoltaic materials. Adv. Mater., 2307863.
9. R. Sun, T. Wang, Q. Fan, M. Wu, X. Yang, X. Wu, Y. Yu, X. Xia, F. Cui, J. Wan, X. Lu, X. Hao, A. K.-Y. Jen, E. Spiecker and J. Min*. 18.2%-efficient ternary all-polymer organic solar cells with improved stability enabled by a chlorinated guest polymer acceptor. Joule, 2023, 7, 221-237.
10. X. Zhao, R. Sun*, X. Wu, M. Zhang, Y. Gao, J. Wan and J. Min*. High-speed printing of a bulk-heterojunction architecture in organic solar cells films. Energy Environ. Sci., 2023, 16, 1711-1720.
11. R. Sun, Y. Wu, X. R. Yang, Y. Gao, Z. Chen, K. Li, J. Qiao, T. Wang, J. Guo, C. Liu, X. Hao, H. Zhu and J. Min*, Single-junction organic solar cells with 19.17% efficiency enabled by introducing one asymmetric guest acceptor. Adv. Mater., 2022, 34, 2110147.
12. R. Sun, W. Wang, H. Yu*, Z. Chen, X. Xia, H. Shen, J. Guo, M. Shi, Y. Zheng, Y. Wu, W. Yang, T. Wang, Q. Wu, Y. Yang, X. Lu, J. Xia, C. Brabec, H. Yan*, Y. Li and J. Min*. Achieving over 17% efficiency of ternary all-polymer solar cells with two well-compatible polymer acceptors. Joule, 2021, 5, 1548-1565.
13. R. Sun, Y. Wu, J. Guo, Y. Wang, F. Qin, B. Shen, D. Li, T. Wang, Y. Li, Y. Zhou, G. Lu, Y. Li and J. Min*, High-performance all-small-molecule organic solar cells without interlayers. Energy Environ. Sci., 2021, 14, 3174-3183.
14. R. Sun, Q. Wu, J. Guo, T. Wang, Y. Wu, B. Qiu, Z. Luo, W. Yang, Z. Hu, J. Guo, M. Shi, C. Yang, F. Huang, Y. Li and J. Min*. A layer-by-layer architecture for printable organic solar cells overcoming the scaling lag of module efficiency. Joule, 2020, 4, 407-419.
15. R. Sun, J. Guo, C. Sun, T. Wang, Z. Luo, Z. Zhang, X. Jiao, W. Tang*, C. Yang*, Y. Li* and J. Min*. A universal layer-by-layer solution-processing approach for efficient non-fullerene organic solar cells. Energy Environ. Sci., 2019, 12, 384-395.
16. R. Sun, D. Deng, J. Guo, Q. Wu, J. Guo, M. Shi, K. Shi, T. Wang, L. Xue, Z. Wei and J. Min*. Spontaneous open-circuit voltage gain of fully fabricated organic solar cells caused by elimination of interfacial energy disorder. Energy Environ. Sci., 2019, 12, 2518-2528.
17. R. Sun, J. Guo, Q. Wu, Z. Zhang, W. Yang, J. Guo, M. Shi, Y. Zhang, S. Kahmann, L. Ye, X. Jiao, M. Loi, Q. Shen, H. Ade, W. Tang, C. Brabec and J. Min*. A multi-objective optimization-based layer-by-layer blade-coating approach for organic solar cells: rational control of vertical stratification for high performance. Energy Environ. Sci., 2019, 12, 3118-3132.