Characterization of the influences of morphology on the intrinsic properties of perovskite films by temperature-dependent and time-resolved spectroscopies

钙钛矿(结构) 光致发光 极化子 激子 材料科学 结合能 载流子 声子 卤化物 化学物理 表征(材料科学) 光电子学 凝聚态物理 纳米技术 化学 结晶学 无机化学 物理 核物理学 电子 量子力学
作者
Miaojie Yu,Shuai Yuan,Hao‐Yi Wang,Jiashang Zhao,Yujun Qin,Li‐Min Fu,Jianping Zhang,Xi‐Cheng Ai
出处
期刊:Physical Chemistry Chemical Physics [The Royal Society of Chemistry]
卷期号:20 (9): 6575-6581 被引量:11
标识
DOI:10.1039/c7cp08402a
摘要

Organic-inorganic halide perovskites have attracted enormous attention owing to their promising application in photovoltaic devices. The morphology of the perovskites is the key to driving the performance of perovskite devices, which necessitates a systematic study. In this work, two typical morphologies, i.e., flake and cube, of perovskite films are fabricated, and the temperature-dependent optical absorption and photoluminescence properties of the two types of perovskite film are systematically investigated. From the temperature-dependent spectra, both exciton and phase transition temperatures of the flake film are found to be about 10 K lower than those of the cube one. Meanwhile, the influences of the morphology on the exciton binding energy, optical phonon energy and polaron binding energy are quantitatively characterized. The exciton binding of the flake film is nearly three times smaller than that of the cube one, while the phonon coupling energy and the polaron binding energy of the former are about 5 meV and 2 meV larger than those of the latter. Furthermore, the results of photoluminescence lifetime and charge separation efficiency further reveal that the charge carrier kinetics in the two kinds of perovskite films is significantly different. The current study provides a theoretical framework to understand the fundamental physics of perovskites and to promote the design and enhancement of active materials for improved optoelectronic devices.
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