A General Wet Transferring Approach for Diffusion-Facilitated Space-Confined Grown Perovskite Single-Crystalline Optoelectronic Thin Films

Hybrid perovskite single-crystalline thin films are promising for making high-performance perovskite optoelectronic devices due to their superior physical properties. However, it is still challenging to incorporate them into multilayer devices because of their on-substrate growth. Here, a wet transf...

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Veröffentlicht in:Nano letters 2020-04, Vol.20 (4), p.2747-2755
Hauptverfasser: Ding, Ran, Liu, Chun-Ki, Wu, Zehan, Guo, Feng, Pang, Sin-Yi, Wong, Lok Wing, Io, Weng Fu, Yuan, Shuoguo, Wong, Man-Chung, Jedrzejczyk, Michal Bartlomiej, Zhao, Jiong, Yan, Feng, Hao, Jianhua
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Sprache:eng
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Zusammenfassung:Hybrid perovskite single-crystalline thin films are promising for making high-performance perovskite optoelectronic devices due to their superior physical properties. However, it is still challenging to incorporate them into multilayer devices because of their on-substrate growth. Here, a wet transfer method is used in transferring perovskite single-crystalline films perfectly onto various target substrates. More importantly, large millimeter-scaled single-crystalline films can be obtained via a diffusion-facilitated space-confined growth method as thin as a few hundred nanometers, which are capable of sustaining excellent crystalline quality and morphology after the transferring process. The availability of these crystalline films offers us a convenient route to further investigate their intrinsic properties of hybrid perovskites. We also demonstrate that the wet transfer method can be used for scalable fabrication of perovskite single-crystalline film-based photodetectors exhibiting a remarkable photoresponsivity. It is expected that this transferring strategy would promise broad applications of perovskite single-crystalline films for more complex perovskite devices.
ISSN:1530-6984
1530-6992
DOI:10.1021/acs.nanolett.0c00379