Directional Charge Carrier Management Enabled by Orderly Arranged Perovskite Heterodomain with Defined Size for Self‐Powered Photodetectors

Author:

Bao Yaqi1,Li Maoxin1,Jin Hangfan1,Wang Xiaobo1,Zeng Jie2,Feng Yang1,Hui Wei1,Wang Dourong1,Gu Lei1,Zhang Jie1,Hua Yikun1,Wang Xiao3,Xu Baomin2,Chen Wei3,Wu Zhongbin1,Müller‐Buschbaum Peter45,Song Lin1ORCID

Affiliation:

1. Frontiers Science Center for Flexible Electronics (FSCFE) Institute of Flexible Electronics (IFE) Ningbo Institute of Northwestern Polytechnical University Northwestern Polytechnical University 127 West Youyi Road Xi'an 710072 P. R. China

2. Department of Materials Science and Engineering and Shenzhen Engineering Research and Development Center for Flexible Solar Cells Southern University of Science and Technology Shenzhen 518055 P. R. China

3. Shenzhen Key Laboratory of Ultraintense Laser and Advanced Material Technology, Center for Intense Laser Application Technology, and College of Engineering Physics Shenzhen Technology University Shenzhen 518118 P. R. China

4. TUM School of Natural Sciences Department of Physics Chair for Functional Materials Technical University of Munich James‐Franck‐Str. 1 85748 Garching Germany

5. Heinz Maier‐Leibnitz Zentrum (MLZ) Technical University of Munich Lichtenbergstr. 1 85748 Garching Germany

Abstract

AbstractPerovskite planar heterojunction is reported to promote charge‐carrier separation at the interface due to the introduced built‐in potential, leading to improved charge‐carrier harvesting. However, the possible diffusion of charge carriers along the film lateral will increase their travel distance to respective electrodes, resulting in increased recombination probabilities. Constructing independent transport channels for positive and negative charge carriers individually is an efficient way to optimize the transport in the perovskite layer and thereby to achieve enhanced device performance. Here, a solution‐based strategy is proposed to fabricate lateral bulk heterojunction (BHJ) by arranging methylammonium‐based and formamidinium‐based perovskites alternately in an ordered array with controllable domains. The structure of perovskite heterodomain directs charge carrier transport along the film normal and limits in‐plane charge carrier diffusion. Moreover, the ordered perovskite array is found to greatly increase light harvesting. Consequently, the self‐powered photodetector based on the perovskite heterodomain with a thickness of only 250 nm achieves a specific detectivity exceeding 1 × 1014 Jones for weak light over the whole visible light spectrum. This work provides guidance toward the fabrication of perovskite lateral BHJ using solution processing, meeting the requirements not only for charge‐carrier manipulation but also for light management.

Funder

Natural Science Foundation of Ningbo Municipality

Fundamental Research Funds for the Central Universities

Deutsche Forschungsgemeinschaft

Publisher

Wiley

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