Optoelectronics Letters, Volume. 17, Issue 8, 475(2021)

wxAMPS theoretical study of the bandgap structure of CZTS thin film to improve the device performance

Yanping WANG... Jiao WANG, Haoran LI, Aimei ZHAO, Bing LI, Jinlian BI* and Wei LI |Show fewer author(s)
Author Affiliations
  • Tianjin Key Laboratory of Film Electronic and Communication Devices, School of Electrical and Electronic Engineering, Tianjin University of Technology, Tianjin 300384, China
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    The carrier recombination was one of the factors limiting the further improvement of the Cu2ZnSnS4 (CZTS) thin film solar cells. In this paper, a proper bandgap structure was designed to solve this problem. The effects of the different bandgap structure on the CZTS thin film solar cells were studied by the solar cell performance simulation software wxAMPS. A graded bandgap structure was designed and optimized. The bandgap with a front bandgap gradient and a flat bandgap gradient had a favorable effect on the CZTS thin film solar cells. Finally, the fill factor (FF) and conversion efficiency (η) of the CZTS thin film solar cell were increased from 36.41% to 42.73% and from 6.85% to 10.03%, respectively. In addition, the effect of donor and acceptor defect densities in CZTS absorber layer near the CdS/CZTS interface on the device performance was studied, η of the CZTS thin film solar cell was increased from 5.99% to 7.55% when the acceptor defect concentration was 1012—1013 cm-3. Moreover, the thicknesses of the CZTS absorber layer were optimized. The FF and η of the CZTS thin film solar cell were increased to 63.41% and 15.04%, respectively.

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    WANG Yanping, WANG Jiao, LI Haoran, ZHAO Aimei, LI Bing, BI Jinlian, LI Wei. wxAMPS theoretical study of the bandgap structure of CZTS thin film to improve the device performance[J]. Optoelectronics Letters, 2021, 17(8): 475

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    Paper Information

    Received: Oct. 19, 2020

    Accepted: Dec. 9, 2020

    Published Online: Sep. 2, 2021

    The Author Email: Jinlian BI (bijinlian815@126.com)

    DOI:10.1007/s11801-021-0159-6

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