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Cross-plane coherent acoustic phonons in two-dimensional organic-inorganic hybrid perovskites

机译:二维有机-无机杂化钙钛矿中的横断面相干声子

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摘要

Two-dimensional Ruddlesden–Popper organic–inorganic hybrid layered perovskites (2D RPs) are solution-grown semiconductors with prospective applications in next-generation optoelectronics. The heat-carrying, low-energy acoustic phonons, which are important for heat management of 2D RP-based devices, have remained unexplored. Here we report on the generation and propagation of coherent longitudinal acoustic phonons along the cross-plane direction of 2D RPs, following separate characterizations of below-bandgap refractive indices. Through experiments on single crystals of systematically varied perovskite layer thickness, we demonstrate significant reduction in both group velocity and propagation length of acoustic phonons in 2D RPs as compared to the three-dimensional methylammonium lead iodide counterpart. As borne out by a minimal coarse-grained model, these vibrational properties arise from a large acoustic impedance mismatch between the alternating layers of perovskite sheets and bulky organic cations. Our results inform on thermal transport in highly impedance-mismatched crystal sub-lattices and provide insights towards design of materials that exhibit highly anisotropic thermal dissipation properties.
机译:二维Ruddlesden-Pop有机-无机混合层状钙钛矿(2D RPs)是溶液生长的半导体,在下一代光电子学中具有潜在的应用前景。对于基于RP的2D器件的热管理非常重要的载热,低能量声子尚未得到开发。在这里,我们根据带隙以下折射率的单独特征,报告了相干纵向声子沿着二维RPs的横断面方向的产生和传播。通过对系统变化的钙钛矿层厚度的单晶进行实验,我们证明了与三维甲基铵碘化铅碘化物相比,二维声波中声子的基团速度和传播长度都显着降低。正如最小的粗粒度模型所证明的那样,这些振动特性是由于钙钛矿片层与大体积有机阳离子的交替层之间的声阻抗不匹配而产生的。我们的结果说明了在高度阻抗不匹配的子晶格中的热传递,并为设计具有高各向异性散热特性的材料提供了见识。

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