Realizing Phase‐Pure (PEA)2FAPb2I7 Perovskite Films by Inhibiting 3D Phase Formation

Author:

Liang Yuchao1,Liu Fangzhou1,Xie Xixi2,Ma Yingzhuang3,Guan Yan4,Yu Wenjin5,Zou Yu5,Zhang Lingling1,Zhang Xian1,Zhang Yangyang1,Li Bohan2,Wu Cuncun1,Jiang Kezhu1,Xiao Lixin5ORCID,Zou Dechun4,Zheng Shijian1

Affiliation:

1. State Key Laboratory of Reliability and Intelligence of Electrical Equipment School of Material Science and Engineering Hebei University of Technology Tianjin 300130 China

2. Beijing Academy of Quantum Information Sciences Beijing 100193 China

3. School of Optical and Electronic Information Suzhou City University & Suzhou Key Laboratory of Biophotonics Suzhou 215104 China

4. College of Chemistry and Molecular Engineering Peking University Beijing 100871 P. R. China

5. State Key Laboratory for Macroscopic Physics and Department of Physics Peking University Beijing 100871 P. R. China

Abstract

Abstract2D Ruddlesden–Popper (RP) layered metal‐halide perovskites have garnered significant interest due to their unique photoelectric properties and excellent stability. However, 2D perovskite films prepared via solution process generally exhibit multi‐quantum well structure with random well width distribution, which significantly impedes the carrier transportation. Herein, the synthesis of phase‐pure 2D (PEA)2FAPb2I7 (PEA = C8H11N, FA = CH4N2) perovskite thin films is reported in ambient environment achieved by suppressing the formation of the 3D perovskite phase. First, incorporation of MACl additive can effectively regulate the intermediate during crystallization, facilitating the formation of a metastable 3D MAxFA1‐xPbIyCl3‐y phase. Second, precise control of environmental humidity is employed to further inhibit the formation of α‐FAPbI3 phase. As a result, the perovskite intermediate composed of predominantly metastable 3D phase and 2D n = 2 phase is achieved, which is eventually transformed into 2D n = 2 perovskite during annealing, leading to markedly enhanced phase purity. Photoconductive‐type photodetectors based on the phase‐pure 2D RP perovskite films are fabricated, demonstrating a high detectivity of over 9.4 × 1012 Jones due to the improved carrier transportation. This study provides a comprehensive insight into the crystallization process of phase‐pure 2D perovskites.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Hebei Province

State Key Laboratory of Reliability and Intelligence of Electrical Equipment

China Postdoctoral Science Foundation

Publisher

Wiley

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