High‐Quality Additive‐Free α‐FAPbI3 Film Fabricated by Alkane/Nanocrystals Method and Surface Chemistry Modulation for Efficient Perovskite Solar Cell

Author:

Wang Jiafeng1,Xiu Jinwei12,Zheng Guanhaojie3,He Dong1,Gao Han1,Chen Zhenhua3,Li Zhaoning1,Chen Guocong12,Zhang Xusheng12,Ma Guoqiang1,Slater Peter Raymond2,He Zhubing1ORCID

Affiliation:

1. Department of Materials Science and Engineering Institute of Innovative Materials (I2M) Shenzhen Key Laboratory of Full Spectral Solar Electricity Generation (FSSEG) Southern University of Science and Technology (SUSTech) No. 1088, Xueyuan Rd. Shenzhen Guangdong 518055 China

2. Birmingham Centre of Energy Storage (BCES) School of Chemical Engineering University of Birmingham Edgbaston Birmingham B15 2TT UK

3. Shanghai Synchrotron Facility Shanghai Advanced Research Institute Chinese Academy of Sciences Shanghai 201204 China

Abstract

AbstractIt's still a scientific issue to synthesize exotic amines‐free and pure‐phase FAPbI3 film because most FAPbI3 films are synthesized by adding MACl‐like exotic amines salts in their precursor solution to reduce the phase transition barrier. In this work, high‐quality and additive‐free phase‐pure α‐FAPbI3 films are successfully fabricated via the sustainable Alkane/Nanocrystals method. FAPbI3 nanocrystals (NCs) are performed as the heterogeneous nuclei to promote the nucleation and crystallization of FAPbI3 films. Cryogenic‐TEM and in situ GIWAXS evidence the seed function and interesting phase evolution of FAPbI3 NCs. The whole phase transition course of pure FAPbI3 film is systematically studied. IR‐AFM and ToF‐SIMS reveal ligands capped on NCs are extruded to the film surface. PbAc‐IPA solution treating the film surface can effectively wash off the surplus ligands at the surface and modulate the surface chemistry and energy levels. As a result, an average power conversion efficiency (PCE) of 21.45% is achieved for MA‐free pure α‐FAPbI3 perovskite solar cells (PSCs), as well as the best light‐soaking stability record of retaining 95% of the initial PCE after 800 h. This work paves a new way to fabricate MA‐free pure α‐FAPbI3 PSCs.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Shenzhen Municipality

Publisher

Wiley

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