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A new (2 × 1) dimerized structure of monolayer 1T-molybdenum disulfide, studied from first principles calculations

机译:从第一性原理计算研究了单层1T二硫化钼的新(2×1)二聚结构

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摘要

The geometric, electronic, and vibrational properties of monolayer 1T-molybdenum disulfide (MoS2) have been studied by using the first-principles calculations. A new (2 × 1) dimerized structure of monolayer 1T-MoS2, called as 1T'-MoS2, has been found, which is semi-conducting and more stable than the previously found ones. Interestingly, a semiconductor-metal transition is found under an applied tensile strain at about 4% or a compressive strain at about 5%, while the dimerization structure has been retained under both the tensile and compressive strains. Moreover, the vibrational properties of three kinds of monolayer MoS2, i.e., the 1T-MoS2, 1T'-MoS2, as well as the 1H-MoS2, have been studied, based upon which the different isomer structures of monolayer MoS2 can be easily distinguishable in experiments by analyzing their characteristic Raman spectra.
机译:使用第一性原理计算研究了单层1T二硫化钼(MoS2)的几何,电子和振动性质。已经发现一种新的(2×1)二层单层1T-MoS2二聚结构,称为1T'-MoS2,它是半导电的,比以前发现的结构更稳定。有趣的是,在施加的拉伸应变为约4%或压缩应变为约5%的情况下发现了半导体-金属的转变,而二聚化结构在拉伸应变和压缩应变下均得以保留。此外,研究了三种单层MoS2的振动特性,即1T-MoS2、1T'-MoS2和1H-MoS2,基于这些振动特性,可以轻松地区分单层MoS2的不同异构体结构在实验中通过分析其特征拉曼光谱。

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