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Vibrational Response of Methylammonium Lead Iodide: From Cation Dynamics to Phonon-Phonon Interactions

机译:甲基甲基铅碘化物的振动反应:从阳离子动力学到声子 - 声子相互作用

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摘要

The dynamic evolution of the vibrational interactions in the prototypical CH3NH3PbI3 was studied through a comprehensive experimental and theoretical investigation with a focus on the interactions between the organic cations and the inorganic cage. To date, no clear picture has emerged on the critical and fundamental interactions between the two perovskite components, despite the relevance of phonons to the electronic properties of several classes of perovskites. For the first time, we have monitored the IR and nonresonant Raman response in the broad frequency range 30-3400cm(-1) and in the temperature interval 80-360K. Strong changes in the energies of different vibrational modes with temperature are observed and examined in the framework of phonon-phonon interactions considering a significant anharmonic contribution to the phonon relaxation process. The vibrational relaxation of the bending modes and their reorientation activation energies identify that such mechanisms are governed by medium-to-strong hydrogen bonds in the orthorhombic phase; however, any ferroelectric ordering in the orthorhombic phase is governed mostly by dipole interactions. These changes imply that charge localization mechanisms play a primary role, and our study enriches the fundamental knowledge of phonon interactions and charge transport in CH3NH3PbI3 for the further development of optoelectronic applications.
机译:通过综合实验和理论研究,研究了原型CH3NH3PBI3振动相互作用的动态演变,重点是有机阳离子与无机笼中的相互作用。迄今为止,尽管声子与若干阶级的电子特性相关,但仍然没有出现清晰的图片。我们首次监控了宽频频率范围内的IR和非族化拉曼响应,并在80-360k中的温度间隔内。在考虑到对位松弛过程的显着的厌声贡献,观察到具有温度的不同振动模式的能量的强烈变化。弯曲模式的振动弛豫及其重新定向激活能识别这些机制受正相色谱间中的中致强氢键的管辖;然而,正交阶段中的任何铁电排序主要受偶极相互作用的约束。这些变化意味着收取的本地化机制发挥着主要作用,我们的研究丰富了CH3NH3PBI3中声子相互作用和电荷运输的基本知识,以进一步发展光电应用。

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