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一种用于扩散促进空间受限生长的钙钛矿单晶光电薄膜的通用湿法转移方法。

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

作者信息

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

机构信息

Department of Applied Physics, The Hong Kong Polytechnic University, Hung Hom, Hong Kong, P.R. China.

出版信息

Nano Lett. 2020 Apr 8;20(4):2747-2755. doi: 10.1021/acs.nanolett.0c00379. Epub 2020 Mar 19.

Abstract

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.

摘要

混合钙钛矿单晶薄膜因其优异的物理性能,在制造高性能钙钛矿光电器件方面具有广阔前景。然而,由于其在衬底上生长的特性,将它们集成到多层器件中仍然具有挑战性。在此,采用一种湿法转移方法将钙钛矿单晶薄膜完美地转移到各种目标衬底上。更重要的是,通过扩散促进的空间受限生长方法,可以获得厚度仅为几百纳米的毫米级大尺寸单晶薄膜,这些薄膜在转移过程后仍能保持优异的晶体质量和形貌。这些晶体薄膜的可得性为我们进一步研究混合钙钛矿的本征特性提供了一条便捷途径。我们还证明,这种湿法转移方法可用于可扩展制造基于钙钛矿单晶薄膜的光探测器,其表现出显著的光响应性。预计这种转移策略将为钙钛矿单晶薄膜在更复杂的钙钛矿器件中的广泛应用带来希望。

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