Benign ferroelastic twin boundaries in halide perovskites for charge carrier transport and recombination

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作者
Xun Xiao
Wenhao Li
Yanjun Fang
Ye Liu
Yuchuan Shao
Shuang Yang
Jingjing Zhao
Xuezeng Dai
Rashid Zia
Jinsong Huang
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[1] University of North Carolina,Department of Applied Physical Sciences
[2] Brown University,School of Engineering and Department of Physics
[3] University of Nebraska-Lincoln,Department of Mechanical and Materials Engineering and Nebraska Center for Materials and Nanoscience
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Grain boundaries have been established to impact charge transport, recombination and thus the power conversion efficiency of metal halide perovskite thin film solar cells. As a special category of grain boundaries, ferroelastic twin boundaries have been recently discovered to exist in both CH3NH3PbI3 thin films and single crystals. However, their impact on the carrier transport and recombination in perovskites remains unexplored. Here, using the scanning photocurrent microscopy, we find that twin boundaries have negligible influence on the carrier transport across them. Photoluminescence (PL) imaging and the spatial-resolved PL intensity and lifetime scanning confirm the electronically benign nature of the twin boundaries, in striking contrast to regular grain boundaries which block the carrier transport and behave as the non-radiative recombination centers. Finally, the twin-boundary areas are found still easier to degrade than grain interior.
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