论文标题

2D分层钙钛矿中振动模式的定向各向异性

Directional Anisotropy of the Vibrational Modes in 2D Layered Perovskites

论文作者

Dhanabalan, Balaji, Leng, Yu-Chen, Biffi, Giulia, Lin, Miao-Ling, Tan, Ping-Heng, Infante, Ivan, Manna, Liberato, Arciniegas, Milena P., Krahne, Roman

论文摘要

有机/无机分层钙壶中的振动模式对于其光电特性至关重要。这些材料的Ruddlesden-Popper相的层次结构允许振动模式的不同方向性依靠八面体平面中的伪观念晶格的主轴。在这里,我们研究了在超频率下具有偏振拉曼光谱的单个去角质ruddlesden-popper钙钛矿片中基本语音模式的方向性。从15-150 cm-1(2-15 meV)的范围内,大量拉曼带的特征取决于温度,以及入射光线性极化的方向。通过控制激发激光相对于八面体层的平面轴的线性极化角度,我们获得了有关振动模式对称性的详细信息。选择两个不同的有机部分:苯乙胺(PEA)和丁基铵(BA)允许辨别接头分子的影响,从而证明了(PEA)2pbbr4样品的振动的强各向异性。依赖温度的拉曼测量结果表明,在室温下观察到的宽声子由一系列尖锐的模式组成,而这种模式分裂在不同的有机部分和振动带方面有很大差异。

The vibrational modes in organic/inorganic layered perovskites are of fundamental importance for their optoelectronic properties. The hierarchical architecture of the Ruddlesden-Popper phase of these materials allows for distinct directionality of the vibrational modes withrespect to the main axes of the pseudocubic lattice in the octahedral plane. Here, we study the directionality of the fundamental phonon modes in single exfoliated Ruddlesden-Popper perovskite flakes with polarized Raman spectroscopy at ultralow-frequencies. A wealth of Raman bands is distinguished in the range from 15-150 cm-1 (2-15 meV), whose features depend on the organic cation species, on temperature, and on the direction of the linear polarization of the incident light. By controlling the angle of the linear polarization of the excitation laser with respect to the in-plane axes of the octahedral layer, we gain detailed information on the symmetry of the vibrational modes. The choice of two different organic moieties, phenethylammonium (PEA) and butylammonium (BA) allows to discern the influence of the linker molecules, evidencing strong anisotropy of the vibrations for the (PEA)2PbBr4 samples. Temperature dependent Raman measurements reveal that the broad phonon bands observed at room temperature consist of a series of sharp modes, and that such mode splitting strongly differs for the different organic moieties and vibrational bands.

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