Key Laboratory of Molecular Nanostructure and Nanotechnology, Institute of Chemistry, Chinese Academy of Science , 2 North 1st Street, Zhongguancun, Beijing 100190, China.
University of Chinese Academy of Science , Beijing 100049, China.
J Am Chem Soc. 2016 Dec 21;138(50):16196-16199. doi: 10.1021/jacs.6b09388. Epub 2016 Dec 7.
Organic-inorganic hybrid perovskite single-crystalline thin films (SCTFs) are promising for enhancing photoelectric device performance due to high carrier mobility, long diffusion length, and carrier lifetime. However, bulk perovskite single crystals available today are not suitable for practical device application due to the unfavorable thickness. Herein, we report a facile space-confined solution-processed strategy to on-substrate grow various hybrid perovskite SCTFs in a size of submillimeter with adjustable thicknesses from nano- to micrometers. These SCTFs exhibit photoelectric properties comparable to bulk single crystals with low defect density and good air stability. The clear thickness-dependent colors allow fast visual selection of SCTFs with a suitable thickness for specific device application. The present substrate-independent growth of perovskite SCTFs opens up opportunities for on-chip fabrication of diverse high-performance devices.
有机-无机杂化钙钛矿单晶薄膜(SCTFs)由于载流子迁移率高、扩散长度长和载流子寿命长,有望提高光电器件性能。然而,目前可用的体相钙钛矿单晶由于厚度不理想,不适合实际器件应用。在此,我们报告了一种简便的空间受限溶液处理策略,可在基底上生长各种尺寸为亚毫米级、厚度可调(从纳米到微米)的杂化钙钛矿 SCTFs。这些 SCTFs 表现出与体单晶相当的光电性能,具有低缺陷密度和良好的空气稳定性。明显的厚度相关颜色允许快速目视选择具有合适厚度的 SCTFs,以满足特定器件应用的需求。本研究中钙钛矿 SCTFs 的无基底生长为各种高性能器件的芯片制造开辟了机会。