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记忆种子助力二维钙钛矿薄膜实现高结构相纯度,用于高效器件。

Memory Seeds Enable High Structural Phase Purity in 2D Perovskite Films for High-Efficiency Devices.

作者信息

Sidhik Siraj, Li Wenbin, Samani Mohammad H K, Zhang Hao, Wang Yafei, Hoffman Justin, Fehr Austin K, Wong Michael S, Katan Claudine, Even Jacky, Marciel Amanda B, Kanatzidis Mercouri G, Blancon Jean-Christophe, Mohite Aditya D

机构信息

Department of Chemical and Biomolecular Engineering, Rice University, Houston, TX, 77005, USA.

Department of Materials Science and NanoEngineering, Rice University, Houston, TX, 77005, USA.

出版信息

Adv Mater. 2021 Jul;33(29):e2007176. doi: 10.1002/adma.202007176. Epub 2021 Jun 6.

DOI:10.1002/adma.202007176
PMID:34096115
Abstract

2D perovskites are a class of halide perovskites offering a pathway for realizing efficient and durable optoelectronic devices. However, the broad chemical phase space and lack of understanding of film formation have led to quasi-2D perovskite films with polydispersity in perovskite layer thicknesses, which have hindered device performance and stability. Here, a simple and scalable approach is reported, termed as the "phase-selective method", to fabricate 2D perovskite thin films with homogenous layer thickness (phase purity). The phase-selective method involves the dissolution of single-crystalline powders with a homogeneous perovskite layer thickness in desired solvents to fabricate thin films. In situ characterizations reveal the presence of sub-micrometer-sized seeds in solution that preserve the memory of the dissolved single crystals and dictate the nucleation and growth of grains with an identical thickness of the perovskite layers in thin films. Photovoltaic devices with a p-i-n architecture are fabricated with such films, which yield an efficiency of 17.1% enabled by an open-circuit voltage of 1.20 V, while preserving 97.5% of their peak performance after 800 h under illumination without any external thermal management.

摘要

二维钙钛矿是一类卤化物钙钛矿,为实现高效耐用的光电器件提供了一条途径。然而,广阔的化学相空间以及对成膜过程缺乏了解,导致准二维钙钛矿薄膜的钙钛矿层厚度存在多分散性,这阻碍了器件的性能和稳定性。在此,报道了一种简单且可扩展的方法,称为“相选择法”,用于制备具有均匀层厚度(相纯度)的二维钙钛矿薄膜。相选择法包括将具有均匀钙钛矿层厚度的单晶粉末溶解在所需溶剂中以制备薄膜。原位表征揭示了溶液中存在亚微米尺寸的晶种,这些晶种保留了溶解单晶的记忆,并决定了薄膜中钙钛矿层厚度相同的晶粒的成核和生长。用这种薄膜制备了具有p-i-n结构的光伏器件,其开路电压为1.20 V,效率为17.1%,同时在无任何外部热管理的光照下800小时后仍保持其峰值性能的97.5%。

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