硕士研究生导师个人信息
姓名:杨乾广,性别:男
学科专业:材料科学与工程
学历及学位:研究生,博士
职称:讲师
Email: yangqg@tzc.edu.cn
学习经历:
2023年毕业于中国科学院大学,获工学博士学位
工作经历:
2019年7月至2020年9月,中国科学院重庆绿色智能技术研究院助理研究员
2023年7月至今,台州学院
研究方向:
1)有机太阳能电池小分子给/受体材料的设计合成及其光伏性能研究。
2)太阳能电池小分子界面材料设计合成及其光伏性能研究。
3)有机小分子光电功能材料低成本合成工艺研究。
主要科研项目:
(1)国家自然科学基金委员会,面上项目,22071238,超分子有机框架材料的光伏性质研究,2021-01-01至 2024-12-31,62万元,在研,参与。
(2)国家自然科学基金委员会,地区科学基金项目,61864005,基于9,9’-联芴烯有机小分子电子受体材料的合成及光伏性能研究,2019-01-01至2022-12-31,39万元,结题,参与。
(3)浙江省自然科学基金委员会,浙江省基础公益研究计划项目,Y24E030043,液晶型高分子给体材料设计合成、光伏性能及工作原理研究,2024-01-01至2026-12-31,10万元,在研,参与。
近期代表性论文及成果:
(1) Fu, J.H.#, Yang Q.G.#, Huang P.H., Chung S., Cho K., Kan Z.P., Liu H., Lu X.H., Lang Y.W., Lai H.J., He, F., Fong, W.K., Lu, S.R. *, Yang, Y., Xiao, Z.Y.*, Li, G.*; Rational molecular and device design enables organic solar cells approaching 20% efficiency. Nat. Communications, 2024, 15: 1830.
(2) Yang, Q.G.#, Chen, H.Y.#, Lv, J., Huang P.H., Han, D.M., Deng, W.Y., Sun, K., Kumar, M., Chung, S., Cho, K., Hu, D.Q., Dong, H.Y., Shao, L., Zhao, F.Q., Xiao, Z.Y.*, Kan Z.P.*, Lu, S.R.*; Balancing the Efficiency and Synthetic Accessibility of Organic Solar Cells with Isomeric Acceptor Engineering, Advanced Science, 2023, 10: 2207678.
(3) Yang, Q.G.#, Hu, D.Q #, Kumar, M., Dong, H.Y., Ahmed, S., Huang P.H.*, Xiao, Z.Y.*, Lu, S.R.*; Effects of Mixed Halogenation on the Performance of Non‐Fullerene Acceptors in All‐Small Molecule Organic Solar Cells, Solar RRL, 2023,7: 2201062.
(4) Duan, T. N.#, Yang, Q.G.#, Sun Z.Y.#, Chen Q, Q, Zhang G.Q., Hu D.Q., Oh, J., Yang, C., Lv, J. *, Feng, B., Kan, Z.P., Chen, S.S., Zhong, C., Lu, S.R.*, Yang, K. *; Oligothiophene electron donor and electron acceptor for all small molecule organic solar cells with efficiency over 9%. Chemical Engineering Journal, 2023,456:141006.
(5) Yang, Q.G.#, Yu, W.Y.#, Lv, J., Huang P.H., He, G.T., Xiao, Z.Y.*, Kan Z.P.*, Lu, S.R.*; Effects of fluorination position on all-polymer organic solar cells. Dyes and Pigments, 2022,200:110180.
(6) Duan, T. N.#, Chen Q, Q.#, Yang, Q.G.#, Hu D.Q.*, Cai, G.L., Lu, X.H.*, Lv, J., Song, H., Zhong, C.*, Liu, F., Yu, D.H., Lu, S.R.*; Simple thiazole-centered oligothiophene donor enables 15.4% efficiency all small molecule organic solar cells. Journal of Materials Chemistry A, 2022, 10:3009.
(7) Hu, D.Q #,Yang, Q.G.#, Zheng, Y.J. #, Tang, H., Chung, S., Singh, R., Lv, J., Fu, J.H., Kan Z.P., Qin, B., Chen, Q.Q., Liao, Z.H., Chen, H.Y., Xiao, Z.Y.*, Sun, K.*, Lu, S.R.*; 15.3% Efficiency All‐Small‐Molecule Organic Solar Cells Achieved by a Locally Asymmetric F, Cl Disubstitution Strategy. Advanced Science, 2021,8:2004262.
(8) Chen, S.S.#, Ye, J.F.#, Yang, Q.G.#, Oh, J., Hu D.Q., Yang, K., Odunmbaku, G., Li, F., Yu, Q.Q., Kan, Z.P., Xiao, Z.Y.*, Yang, C., Lu, S.R.*, Sun, K.*; Molecular ordering and phase segregation induced by a volatile solid additive for highly efficient all-small-molecule organic solar cells. Journal of Materials Chemistry A, 2021, 9:2857.
(9) Hu, D.Q. #, Yang, Q.G. #, Chen, H.Y., Wobben, F., Le, V., Singh, R., Liu, T., Ma, R., Tang, H., Koster, L., Duan, T.N., Yan, H., Kan, Z.P. *, Xiao, Z.Y.*, Lu, S.R.*; 15.34% efficiency all-small-molecule organic solar cells with an improved fill factor enabled by a fullerene additive. Energy & Environmental Science, 2020,13:2134.