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Interlayer bond polarizability model for stacking-dependent low-frequency Raman scattering in layered materials

机译:夹层债券极化率模型stacking-dependent低频拉曼散射在层状材料

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摘要

Two-dimensional (2D) layered materials have been extensively studied owing to their fascinating and technologically relevant properties. Their functionalities can be often tailored by the interlayer stacking pattern. Low-frequency (LF) Raman spectroscopy provides a quick, non-destructive and inexpensive optical technique for stacking characterization, since the intensities of LF interlayer vibrational modes are sensitive to the details of the stacking. A simple and generalized interlayer bond polarizability model is proposed here to explain and predict how the LF Raman intensities depend on complex stacking sequences for any thickness in a broad array of 2D materials, including graphene, MoS2, MoSe2, NbSe2, Bi2Se3, GaSe, h-BN, etc. Additionally, a general strategy is proposed to unify the stacking nomenclature for these 2D materials. Our model reveals the fundamental mechanism of LF Raman response to the stacking, and provides general rules for stacking identification.
机译:二维(2 d)层状材料广泛的研究由于其令人着迷和技术相关的属性。功能可以经常量身定做的夹层叠加模式。拉曼光谱提供了一个快速、非破坏性和廉价的光学技术叠加特性,因为强度低频层间的振动模式很敏感的细节堆积。简单的和广义夹层债券提出了极化率模型来解释和预测低频拉曼强度取决于如何在复杂的叠加序列厚度在一个广泛的二维材料,包括graphene, MoS2, MoSe2, NbSe2, Bi2Se3 GaSe、h-BN等。统一这些2 d的叠加命名法材料。叠加低频拉曼反应机制,并提供通用规则堆积识别。

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