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利用相干拉曼光谱阐明层状钙钛矿中的声子退相干机制。

Elucidating phonon dephasing mechanisms in layered perovskites with coherent Raman spectroscopies.

作者信息

Gan Zijian, Gloor Camryn J, Yan Liang, Zhong Xiaowei, You Wei, Moran Andrew M

机构信息

Department of Chemistry, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599, USA.

出版信息

J Chem Phys. 2024 Aug 21;161(7). doi: 10.1063/5.0216472.

Abstract

Organic-inorganic hybrid perovskite quantum wells exhibit electronic structures with properties intermediate between those of inorganic semiconductors and molecular crystals. In these systems, periodic layers of organic spacer molecules occupy the interstitial spaces between perovskite sheets, thereby confining electronic excitations to two dimensions. Here, we investigate spectroscopic line broadening mechanisms for phonons coupled to excitons in lead-iodide layered perovskites with phenyl ethyl ammonium (PEA) and azobenzene ethyl ammonium (AzoEA) spacer cations. Using a modified Elliot line shape analysis for the absorbance and photoluminescence spectra, polaron binding energies of 11.2 and 17.5 meV are calculated for (PEA)2PbI4 and (AzoEA)2PbI4, respectively. To determine whether the polaron stabilization processes influence the dephasing mechanisms of coupled phonons, five-pulse coherent Raman spectroscopies are applied to the two systems under electronically resonant conditions. The prominence of inhomogeneous line broadening mechanisms detected in (AzoEA)2PbI4 suggests that thermal fluctuations involving the deformable organic phase broaden the distributions of phonon frequencies within the quantum wells. In addition, our data indicate that polaron stabilization primarily involves photoinduced reorganization of the organic phases for both systems, whereas the impulsively excited phonons represent less than 10% of the total polaron binding energy. The signal generation mechanisms associated with our fifth-order coherent Raman experiments are explored with a perturbative model in which cumulant expansions are used to account for time-coincident vibrational dephasing and polaron stabilization processes.

摘要

有机-无机杂化钙钛矿量子阱展现出的电子结构,其性质介于无机半导体和分子晶体之间。在这些体系中,有机间隔分子的周期性层占据了钙钛矿片层之间的间隙空间,从而将电子激发限制在二维空间。在此,我们研究了与碘化铅层状钙钛矿中激子耦合的声子的光谱线展宽机制,其中间隔阳离子为苯乙基铵(PEA)和偶氮苯乙基铵(AzoEA)。通过对吸收光谱和光致发光光谱使用改进的埃利奥特线形分析,分别计算出(PEA)2PbI4和(AzoEA)2PbI4的极化子结合能为11.2和17.5毫电子伏特。为了确定极化子稳定过程是否影响耦合声子的退相机制,在电子共振条件下,对这两个体系应用了五脉冲相干拉曼光谱。在(AzoEA)2PbI4中检测到的非均匀线展宽机制的突出表明,涉及可变形有机相的热涨落拓宽了量子阱内声子频率的分布。此外,我们的数据表明,极化子稳定主要涉及两个体系中有机相的光致重组,而脉冲激发的声子占总极化子结合能的比例不到10%。我们用一个微扰模型探索了与我们的五阶相干拉曼实验相关的信号产生机制,其中累积量展开用于解释时间重合的振动退相和极化子稳定过程。

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