Abstract
For successful long-term deployment and operation of kesterites Cu2ZnSn(SxSe1−x)4 (CZTSSe) as light-absorber materials for photovoltaics, device stability and recovery in kesterite solar cells are investigated. A low-temperature heat treatment is applied to overcome the poor charge extraction that developed in the natural aging process. It is suggested that defect states at aged CZTSSe/CdS heterojunctions were reduced, while apparent doping density in the CZTSSe absorber increased due to Cd/Zn interdiffusion at the heterojunction during the annealing process. In situ annealing experiments in a transmission electron microscope were used to investigate the elemental diffusion at the CZTSSe/CdS heterojunction. This study reveals the critical role of heat treatment to enhance the absorber/Mo back contact, improve the quality of the absorber/buffer heterojunction, and recover the device performance in aged kesterite thin-film solar cells.
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CITATION STYLE
Campbell, S., Duchamp, M., Ford, B., Jones, M., Nguyen, L. L., Naylor, M. C., … Qu, Y. (2022). Recovery Mechanisms in Aged Kesterite Solar Cells. ACS Applied Energy Materials, 5(5), 5404–5414. https://doi.org/10.1021/acsaem.1c03247
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