联系方式

职  称:青年研究员

所在部门:有机化学第二研究所

研究方向:有机光电转换材料的设计合成及器件性能研究

办 公 室 :第一化学楼3008室

联系电话:

电子邮件:zym@lzu.edu.cn

张雅敏,硕士生导师,兰州大学青年研究员。2014年本科毕业于兰州大学应用化学专业,获理学学士学位;2019年博士毕业于南开大学有机化学专业,师从陈永胜教授,获理学博士学位;20198月加入兰州大学化学化工学院,功能有机分子化学国家重点实验室开展研究工作。主要研究方向为有机光电转换材料的设计合成及其在太阳能电池及光电探测器中的应用。


[1]主持国家自然科学基金委面上项目(批准号:523731852024-01-012027-12-31

[2]主持国家自然科学基金委青年科学基金项目(批准号:220051282021-01-012023-12-31

[3]主持兰州大学特殊功能材料与结构设计教育部重点实验室(B类)开放课题

[4]主持中央高校基本科研业务费“双碳”计划专项项目(lzujbky-2021-sp59


[1] Cui, T.#; Huang, Z.#; Zhang, Y.*; Ru, X.-P.; Bi, X.; Ding, Y.-T.; Yang, Y.; Dai, J.; Lu, G.; Liu, Z.; Chen, Y.*; Zhang, H.-L.*, A “belt” strategy for promoting the 3D network packing of fully non-fused ring acceptors in organic solar cells. J. Mater. Chem. A 2024, DOI: 10.1039/d3ta07296g

[2] Ma, Y.#; Zhang, Y.*#; Gan, S.-M., Zhang, Y.-C.; Fei, X.; Wang, T.; Zhang, Z.-Q.; Gong, X.; Zhang, H.-L.*, Ternary Organic Photovoltaic Devices Based on Wide-band Gap Small Molecule Donor Third Component. Chem. J. Chinese. U. 2023, 44(9): 20230170.

[3] Sun, W.-J.#; Wang, Y.-T.#; Zhang, Y.*; Sun, B.; Zhang, Z.-Q.; Xiao, M.-J.; Li, X.-Y.; Huo, Y.; Xin, J.; Zhu, Q.; Ma, W.; Zhang, H.-L.*, A Cathode Interface Layer Based on 4,5,9,10-Pyrene Diimide for Highly Efficient Binary Organic Solar Cells. Angew. Chem. Int. Ed. 2022, 61, e202208383. 

[4] Cui, T.; Zhang, Y.*; Fei, X.; Ding, Y.-T.; Zhang, Z.-Q.; Wang, T.; Sun, C.-L.; Zhu, Q.; Xin, J.; Seibt, S.; Ma, W. *; Zhang, H.-L.*, Efficient and Stable Nonfused Ring Small Molecule Acceptors Powered by an Electron Donating Unit for Organic Solar Cells. ACS Appl. Energy Mater. 2022, 5 (11), 13861-13870.

[5] Zhang, Y.; Xiao, Z.; Ding, L.*; Zhang, H.-L.*, Singlet fission and its application in organic solar cells. J. Semicond. 2022, 43 (8), 080201.

[6] Ma, Y.-F.; Zhang, Y.*; Zhang, H.-L.*, Solid additives in organic solar cells: progress and perspectives. J. Mater. Chem. C 2022, 10, 2364-2374.

[7] Chang, M. #; Zhang, Y.*#; Lu, B.-S.; Sui, D.; Wang, F.; Wang, J.; Yang, Y.; Kan, B.*, The design of quinoxaline based unfused non-fullerene acceptors for high performance and stable organic solar cells. Chem. Eng. J. 2022, 427, 131473.

[8] Hu, T.-Y.#; Zhang, Y.*#, Lu, B.-S.; Ma, Y.-F.; Zhu, Y.-N.; Wang, Y.-T.; Zhang, B.-Y.; Zhang, Z.-Q.; Wang, J.; Yang, Y.; Zhang, H.-L.*, Unfused-Ring Small Molecule Acceptors Based on A1-D-A2-D-A1 Architecture with Low Non-Radiative Energy Loss and Excellent Air Stability, Mater. Today Energy, 2021, 21, 100802

[9]. Lu, B.-S.; Zhang, Y.*; Hu, T.-Y.; Ma, Y.-F.; Zhu, Y.-N.; Liu, D.-W.; Zhang, Z.-Q.; Wang, E.; Ma, W.; Zhang, H.-L.*: "Non-fullerene acceptors based on multiple non-covalent interactions for low cost and air stable organic solar cells. Org. Electron. 2021, 93, 106132.

[10] Liu, D.-W.; Zhang, Y.*; Li, X.-Y.; Xiao, Q.; Sun, W.-J.; Shao, X.; Zhang, H.-L.*, Nonvolatile organic field-effect transistor memory from pyrene-fused azaindacene regioisomers. J. Mater. Chem. C, 2021, 9 (20), 6560-6567.

[11] Wang, W. V.; Zhang, Y.*; Li, X.-Y.; Chen, Z.-Z.; Wu, Z.-H.; Zhang, L.; Lin, Z.-W.; Zhang, H.-L.*: “High performance nonvolatile organic field-effect transistor memory devices based on pyrene diimide derivative. InfoMat, 2021, 3, 814-822.

[12]. Zhang, Y.; Feng, H.; Meng, L.; Wang, Y.; Chang, M.; Li, S.; Guo, Z.; Li, C.; Zheng, N.; Xie, Z.; Wan, X.*; Chen, Y.: High Performance Thick-Film Nonfullerene Organic Solar Cells with Efficiency over 10% and Active Layer Thickness of 600 nm. Adv. Energy Mater. 2019, 1902688.

[13]. Zhang, Y.#; Kan, B.#; Sun, Y.; Wang, Y.; Xia, R.; Ke, X.; Yi, Y.-Q.-Q.; Li, C.; Yip, H.-L.; Wan, X.; Cao, Y.; Chen, Y*. Non-fullerene Tandem Organic Solar Cells with High Performance of 14.11%. Adv. Mater. 2018, 30, 1707508.

[14]. Meng, L.; Zhang, Y.; Wan, X.*; Li, C.; Zhang, X.; Wang, Y.; Ke, X.; Xiao, Z.; Ding, L.*; Xia, R.; Yip, H.-L.; Cao, Y.; Chen, Y.* Organic and solution-processed tandem solar cells with 17.3% efficiency. Science, 2018, 361, 1094-1098.

[15]. Wang, Y.#; Zhang, Y.#; Qiu, N.; Feng, H.; Gao, H.; Kan, B.; Ma, Y.; Li, C.; Wan, X.; Chen, Y.* A Halogenation Strategy for over 12% Efficiency Non-fullerene Organic Solar Cells. Adv. Energy Mater. 2018, 8, 1702870.

 

参与编写“十三五”国家重点出版物出版规划项目——光电子科学与技术前沿丛书《有机小分子太阳能电池材料与器件》(第二版)


1. 目前担任2020级应用化学班班主任

2. 草地农业科技学院——化学基础一实验课