One-Step Hydrothermal Deposition of AgSbS 2-x Se x Thin Films for Solar Cell Applications

AgSbS Se is a promising light-harvesting material for thin film solar cells, characterized by nontoxicity, high chemical stability, and excellent optoelectronic properties. However, the complex chemical composition of AgSbS Se poses significant challenges to thin film preparation, giving rise to an...

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Bibliographic Details
Published inSmall (Weinheim an der Bergstrasse, Germany) Vol. 20; no. 44; p. e2403247
Main Authors Peng, Xiaoqi, Sheng, Shuwei, Gao, Huihui, Huang, Lei, Zhao, Qi, Wang, Haolin, Zhu, Changfei, Tang, Rongfeng, Chen, Tao
Format Journal Article
LanguageEnglish
Published Germany 01.11.2024
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Summary:AgSbS Se is a promising light-harvesting material for thin film solar cells, characterized by nontoxicity, high chemical stability, and excellent optoelectronic properties. However, the complex chemical composition of AgSbS Se poses significant challenges to thin film preparation, giving rise to an intensive dependence on multi-step preparation methods. Herein, a hydrothermal method is developed for depositing AgSbS Se films and achieves one-step preparation of this kind of thin film materials for the first time. This method can provide sufficient energy for atomic nucleation and adsorption on the substrate surface to promote nuclei aggregation and grow into films. Meanwhile, it achieves control of the chemical kinetics of the deposition solution by introducing EDTA-2Na as an additive and suppressing the enrichment of Ag Se impurities at the substrate interface. As a result, a high-purity AgSbS Se film with compact and flat morphology is prepared and assembled into solar cells. The device delivers a power conversion efficiency of 3.04% under standard illumination, which is currently the highest efficiency for AgSbS Se solar cells fabricated by the one-step method. This study provides a facile and promising method for the controllable preparation of high-quality AgSbS Se thin films and promoting their application in solar cells.
ISSN:1613-6810
1613-6829
DOI:10.1002/smll.202403247