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Energetics and kinetics of phase transition between a 2H and a 1T MoS2 monolayer—a theoretical study

机译:2H和1T MoS2单层之间相变的能量学和动力学-理论研究

摘要

Phase transitions between semiconducting 2H and metallic 1T (or 1T′) molybdenum disulphides (MoS2) are explored comprehensively by first-principles calculations. The nucleation of a 1T (or 1T′) nucleus in a 2H MoS2 lattice, the formation of the 2H-1T (1T′) interfaces and the kinetics of interface propagation during phase transition were thoroughly investigated in this study. It was found that, among various potential interface structures between the two phases, Mo-rich and two S-rich zigzag (ZZ) boundaries are energetically more preferable than others. Therefore, triangular or hexagonal 1T MoS2 domains with the three types of ZZ boundaries are expected to be the equilibrium structures of the 1T nucleus in a 2H lattice. Further exploration reveals a very high nucleation energy of the 1T phase which suggests that the nucleation may start from a defect site or the edge of the 2H phase. Besides, the kinetics of 2H-1T (1T′) boundary propagation show that the growth rate of the ZZ boundaries is significantly slower than the armchair (AC) ones'. Therefore, the ZZ-boundary dominated domains are expected to be observed during the growth of the 1T phase while the rounded domains with various high-index edges are expected to be seen throughout shrinkage. This study reveals both the energetics and the kinetics of the phase transition of transition metal dichalcogenide materials and also sheds light on other 2D materials.
机译:通过第一性原理计算,全面探索了半导体2H与金属1T(或1T')二硫化钼(MoS2)之间的相变。在本研究中,对2H MoS2晶格中的1T(或1T')核的成核,2H-1T(1T')界面的形成以及界面传播的动力学进行了深入研究。已经发现,在两相之间的各种潜在界面结构中,富含Mo和两个富含S的Z字形(ZZ)边界在能量上比其他边界更优选。因此,具有三种ZZ边界的三角形或六边形1T MoS2域有望成为2H晶格中1T核的平衡结构。进一步的研究表明1T相的成核能非常高,这表明成核可能始于2H相的缺陷部位或边缘。此外,2H-1T(1T')边界传播的动力学表明,ZZ边界的生长速度明显慢于扶手椅(AC)的增长。因此,预计在1T相的生长过程中会观察到ZZ边界占主导的结构域,而在整个收缩过程中都将看到具有各种高折射率边缘的圆形结构域。这项研究揭示了过渡金属二卤化碳材料的相变的能量学和动力学,并为其他2D材料提供了启示。

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  • 作者

    Zhao W; Ding F;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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