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低维金属卤化物钙钛矿中的成分和取向控制。

Compositional and orientational control in metal halide perovskites of reduced dimensionality.

作者信息

Quintero-Bermudez Rafael, Gold-Parker Aryeh, Proppe Andrew H, Munir Rahim, Yang Zhenyu, Kelley Shana O, Amassian Aram, Toney Michael F, Sargent Edward H

机构信息

Department of Electrical and Computer Engineering, University of Toronto, Toronto, Ontario, Canada.

SLAC National Accelerator Laboratory, Menlo Park, CA, USA.

出版信息

Nat Mater. 2018 Oct;17(10):900-907. doi: 10.1038/s41563-018-0154-x. Epub 2018 Sep 10.

Abstract

Reduced-dimensional metal halide perovskites (RDPs) have attracted significant attention in recent years due to their promising light harvesting and emissive properties. We sought to increase the systematic understanding of how RDPs are formed. Here we report that layered intermediate complexes formed with the solvent provide a scaffold that facilitates the nucleation and growth of RDPs during annealing, as observed via in situ X-ray scattering. Transient absorption spectroscopy of RDP single crystals and films enables the identification of the distribution of quantum well thicknesses. These insights allow us to develop a kinetic model of RDP formation that accounts for the experimentally observed size distribution of wells. RDPs exhibit a thickness distribution (with sizes that extend above n = 5) determined largely by the stoichiometric proportion between the intercalating cation and solvent complexes. The results indicate a means to control the distribution, composition and orientation of RDPs via the selection of the intercalating cation, the solvent and the deposition technique.

摘要

近年来,低维金属卤化物钙钛矿(RDPs)因其具有良好的光捕获和发光特性而备受关注。我们试图增进对RDPs形成过程的系统理解。在此我们报告,通过原位X射线散射观察发现,与溶剂形成的层状中间络合物提供了一个支架,有助于在退火过程中RDPs的成核和生长。RDP单晶和薄膜的瞬态吸收光谱能够确定量子阱厚度的分布。这些见解使我们能够建立一个RDP形成的动力学模型,该模型考虑了实验观察到的阱尺寸分布。RDPs表现出一种厚度分布(尺寸延伸至n > 5),这在很大程度上由嵌入阳离子与溶剂络合物之间的化学计量比决定。结果表明,通过选择嵌入阳离子、溶剂和沉积技术,可以控制RDPs的分布、组成和取向。

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