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Boosting the efficiency and stability of CsPbBr3 perovskite solar cells through modified multi-step spin-coating method

JOURNAL OF ALLOYS AND COMPOUNDS [2023]
Guoliang Che, Xiying Wang, Can Cui, Beili Pang, Xinjie Wang, Hongzhou Dong, Jianguang Feng, Liyan Yu, Lifeng Dong
ABSTRACT

In this research, we enhance the stability of all-inorganic CsPbBr 3 perovskite solar cells using a modified multi-step spin-coating technique. By introducing low-concentration CsBr and PbBr 2 in two additional steps, we achieve a PbBr 2 layer with fewer pinholes, improved crystallinity, and a smoother surface. This promotes the formation of a high-quality CsPbBr 3 film with larger grains by incorporating a derivative-phase CsPb 2 Br 5 . This film reduces interface defects, enhances grain growth, and boosts power conversion efficiency from 5.43% to 9.36%. Notably, unencapsulated devices maintain stable performance for over 2400 h in ambient air conditions.

MATERIALS

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