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Yamin Zhang

Yamin Zhang
Yamin Zhang
Ph.D., Assistant Professor
Tel:
+86-15522797065
E-Mail:
zym@lzu.edu.cn
·EDUCATION AND EXPERIMENCE


2019-present          Assistant professor, State Key Laboratory of Applied Organic Chemistry 

                               (SKLAOC), Lanzhou University

2014-2019              Ph.D., State Key Laboratory of Elemento-organic Chemistry (SKLEOC), 

                               ( Advisor: Prof. Yongsheng Chen), Nankai University

2010-2014              B.S., College of chemistry and Chemical Engineering, Lanzhou University

· Research Topics

Organic photovoltaic materials and devices

· Publications

1. Asymmetric non-fused ring acceptor with low energy loss for efficient organic solar cells. Zhang Y.-C.#, Chang M.#, Chen J., Zhang, Y.*, Ding Y.-T., Yang Y., Qin Y.-G., Zhang, H.-L.*, Chem. Eng. J.2024491, 151806.

2. A “belt” strategy for promoting the 3D network packing of fully non-fused ring acceptors in organic solar cells. 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.*, J. Mater. Chem. A202412, 6996–7004.

3. Ternary Organic Photovoltaic Devices Based on Wide-band Gap Small Molecule Donor Third Component. Ma, Y.#; Zhang, Y.*#; Gan, S.-M., Zhang, Y.-C.; Fei, X.; Wang, T.; Zhang, Z.-Q.; Gong, X.; Zhang, H.-L.*, Chem. J. Chinese. U., 202344(9): 20230170.

4. A Cathode Interface Layer Based on 4,5,9,10-Pyrene Diimide for Highly Efficient Binary Organic Solar Cells. 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.*, Angew. Chem. Int. Ed., 202261, e202208383.

5. Efficient and Stable Nonfused Ring Small Molecule Acceptors Powered by an Electron Donating Unit for Organic Solar Cells. 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.*, ACS Appl. Energy Mater., 20225(11), 13861-13870.

6. Singlet fission and its application in organic solar cells. Zhang, Y.; Xiao, Z.; Ding, L.*; Zhang, H.-L.*, J. Semicond., 202243(8), 080201.

7. Solid additives in organic solar cells: progress and perspectives. Ma, Y.-F.; Zhang, Y.*; Zhang, H.-L.*, J. Mater. Chem. C, 202210, 2364-2374.

8. The design of quinoxaline based unfused non-fullerene acceptors for high performance and stable organic solar cells. Chang, M. #; Zhang, Y.*#; Lu, B.-S.; Sui, D.; Wang, F.; Wang, J.; Yang, Y.; Kan, B.*, Chem. Eng. J.2022427, 131473.

9. Unfused-Ring Small Molecule Acceptors Based on A1-D-A2-D-A1 Architecture with Low Non-Radiative Energy Loss and Excellent Air Stability. 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.*, Mater. Today Energy202121, 100802.

10. Non-fullerene acceptors based on multiple non-covalent interactions for low cost and air stable organic solar cells. 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.*, Org. Electron.202193, 106132.

11. Nonvolatile organic field-effect transistor memory from pyrene-fused azaindacene regioisomers. Liu, D.-W.; Zhang, Y.*; Li, X.-Y.; Xiao, Q.; Sun, W.-J.; Shao, X.; Zhang, H.-L.*, J. Mater. Chem. C20219 (20), 6560-6567.

12. High performance nonvolatile organic field-effect transistor memory devices based on pyrene diimide derivative. Wang, W. V.; Zhang, Y.*; Li, X.-Y.; Chen, Z.-Z.; Wu, Z.-H.; Zhang, L.; Lin, Z.-W.; Zhang, H.-L.*, InfoMat20213, 814-822.

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

14. Non-fullerene Tandem Organic Solar Cells with High Performance of 14.11%. 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*., Adv. Mater.201830, 1707508.

15. Organic and solution-processed tandem solar cells with 17.3% efficiency. 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.*, Science2018361, 1094-1098.

16. A Halogenation Strategy for over 12% Efficiency Non-fullerene Organic Solar Cells. Wang, Y.#; Zhang, Y.#; Qiu, N.; Feng, H.; Gao, H.; Kan, B.; Ma, Y.; Li, C.; Wan, X.; Chen, Y.*, Adv. Energy Mater.20188, 1702870.

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