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退火后处理对CuZnSnS太阳能电池性能的影响。

The effect of post-annealing on the performance of the CuZnSnS solar cells.

作者信息

Gansukh Mungunshagai, Martinho Filipe, Espindola Moises, Engberg Sara, Schou Jørgen, Canulescu Stela

机构信息

Power Engineering School, Mongolian University of Science and Technology, Ulaanbaatar, 14191, Mongolia.

Department of Electrical and Photonics Engineering, Technical University of Denmark, 4000, Roskilde, Denmark.

出版信息

Sci Rep. 2024 Aug 27;14(1):19898. doi: 10.1038/s41598-024-70865-x.

Abstract

CuZnSnS (CZTS) solar cells commonly undergo post-annealing treatments to enhance their performance. However, multiple concurrent effects, including Cu-Zn disorder, Na diffusion from the back contact, CZTS grain boundary passivation, and elemental interdiffusion at the CdS/CZTS interface, can occur simultaneously during post-annealing, making it challenging to isolate their specific influence on device performance. To address this complexity, we have utilized Cu-Zn-disordered CZTS absorbers to eliminate the influence of Cu-Zn disorder in this study. Post-annealing experiments conducted at 120 to 300 °C in nitrogen and air atmospheres aim to decouple and assess the impact of different annealing conditions on the performance of CZTS solar cells. Our findings suggest that the optimal post-annealing might be a combined effect of two distinct processes: CZTS absorber surface passivation occurring at 325 °C and CdS crystallization at 225 °C. Hence, improvement in device performance could result from multiple concurrent mechanisms occurring at different temperatures.

摘要

铜锌锡硫(CZTS)太阳能电池通常会进行后退火处理以提高其性能。然而,在后退火过程中可能会同时出现多种并发效应,包括铜锌无序、钠从背接触扩散、CZTS晶界钝化以及CdS/CZTS界面处的元素互扩散,这使得难以分离它们对器件性能的具体影响。为了解决这种复杂性,在本研究中我们使用了铜锌无序的CZTS吸收层来消除铜锌无序的影响。在氮气和空气气氛中于120至300°C进行的后退火实验旨在分离并评估不同退火条件对CZTS太阳能电池性能的影响。我们的研究结果表明,最佳后退火可能是两个不同过程的综合效应:在325°C时发生的CZTS吸收层表面钝化和在225°C时发生的CdS结晶。因此,器件性能的改善可能源于在不同温度下同时发生的多种并发机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf1d/11349944/bb76c5ccd4f9/41598_2024_70865_Fig1_HTML.jpg

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