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无机-有机层状钙钛矿薄膜中的原位插层动力学

In situ intercalation dynamics in inorganic-organic layered perovskite thin films.

作者信息

Ahmad Shahab, Kanaujia Pawan K, Niu Wendy, Baumberg Jeremy J, Vijaya Prakash G

机构信息

Nanophotonics Lab, Department of Physics, Indian Institute of Technology Delhi , New Delhi 110 016, India.

出版信息

ACS Appl Mater Interfaces. 2014 Jul 9;6(13):10238-47. doi: 10.1021/am501568j. Epub 2014 Jun 26.

Abstract

The properties of layered inorganic semiconductors can be manipulated by the insertion of foreign molecular species via a process known as intercalation. In the present study, we investigate the phenomenon of organic moiety (R-NH3I) intercalation in layered metal-halide (PbI2)-based inorganic semiconductors, leading to the formation of inorganic-organic (IO) perovskites [(R-NH3)2PbI4]. During this intercalation strong resonant exciton optical transitions are created, enabling study of the dynamics of this process. Simultaneous in situ photoluminescence (PL) and transmission measurements are used to track the structural and exciton evolution. On the basis of the experimental observations, a model is proposed which explains the process of IO perovskite formation during intercalation of the organic moiety through the inorganic semiconductor layers. The interplay between precursor film thickness and organic solution concentration/solvent highlights the role of van der Waals interactions between the layers, as well as the need for maintaining stoichiometry during intercalation. Nucleation and growth occurring during intercalation matches a Johnson-Mehl-Avrami-Kolmogorov model, with results fitting both ideal and nonideal cases.

摘要

层状无机半导体的性质可以通过一种称为插层的过程,插入外来分子物种来进行调控。在本研究中,我们研究了有机部分(R-NH3I)在层状金属卤化物(PbI2)基无机半导体中的插层现象,这导致了无机-有机(IO)钙钛矿[(R-NH3)2PbI4]的形成。在这个插层过程中,会产生强烈的共振激子光学跃迁,从而能够研究这个过程的动力学。同时利用原位光致发光(PL)和透射测量来跟踪结构和激子的演化。基于实验观察结果,提出了一个模型,该模型解释了在有机部分通过无机半导体层插层过程中IO钙钛矿的形成过程。前驱体膜厚度与有机溶液浓度/溶剂之间的相互作用突出了层间范德华相互作用的作用,以及在插层过程中保持化学计量比的必要性。插层过程中发生的成核和生长符合约翰逊-梅hl-阿夫拉米-科尔莫戈罗夫模型,结果适用于理想和非理想情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f05/4092025/cbcc63caf7d8/am-2014-01568j_0002.jpg

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