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Stacking-controllable interlayer coupling and symmetric configuration of multilayered MoSsub2/sub

机译:MoS 2 的堆叠可控层间耦合和对称构型

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NaCl-assisted APCVD technique to synthesize multi-stacked MoS2 crystals with different stacking orientations and shape has been developed. We found that the stacking orientation of multi-stacked MoS2 crystals shows the underlying variation in the crystalline phases, symmetry inversion, spin–orbit coupling and interlayer interactions through intensive optical study based on Raman spectroscopy, PL spectroscopy and nonlinear technique of FWM correlated SHG imaging technique. Our study based on the crystals with different shape and multiple stacking configurations provide a new avenue for the possibilities of future optoelectronic devices.
机译:已经开发了NaCl辅助的APCVD技术来合成具有不同堆叠方向和形状的多层MoS 2晶体。我们通过基于拉曼光谱,PL光谱和FWM相关SHG成像的非线性技术的深入光学研究发现,多层MoS2晶体的堆叠方向显示出晶体相的潜在变化,对称反转,自旋-轨道耦合和层间相互作用。技术。我们基于具有不同形状和多种堆叠结构的晶体的研究为未来的光电器件的可能性提供了一条新途径。

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