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单层和少层 MoS2 的异常晶格振动。

Anomalous lattice vibrations of single- and few-layer MoS2.

机构信息

Department of Mechanical Engineering, Columbia University, New York, New York 10027, USA.

出版信息

ACS Nano. 2010 May 25;4(5):2695-700. doi: 10.1021/nn1003937.

Abstract

Molybdenum disulfide (MoS(2)) of single- and few-layer thickness was exfoliated on SiO(2)/Si substrate and characterized by Raman spectroscopy. The number of S-Mo-S layers of the samples was independently determined by contact-mode atomic force microscopy. Two Raman modes, E(1)(2g) and A(1g), exhibited sensitive thickness dependence, with the frequency of the former decreasing and that of the latter increasing with thickness. The results provide a convenient and reliable means for determining layer thickness with atomic-level precision. The opposite direction of the frequency shifts, which cannot be explained solely by van der Waals interlayer coupling, is attributed to Coulombic interactions and possible stacking-induced changes of the intralayer bonding. This work exemplifies the evolution of structural parameters in layered materials in changing from the three-dimensional to the two-dimensional regime.

摘要

二硫化钼(MoS(2))的单层和少数层厚度被剥离在 SiO(2)/Si 衬底上,并通过拉曼光谱进行了表征。样品的 S-Mo-S 层数量通过接触模式原子力显微镜独立确定。两个 Raman 模式,E(1)(2g)和 A(1g),表现出对厚度的敏感依赖性,前者的频率随厚度的增加而减小,后者的频率随厚度的增加而增加。结果提供了一种方便可靠的方法,可实现具有原子级精度的层厚度确定。这种频率移动的相反方向,不能仅仅通过范德华层间耦合来解释,归因于库仑相互作用和可能的层内键合的堆叠诱导变化。这项工作说明了层状材料从三维到二维结构参数的演变。

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