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Origin of the Phase Transition in Lithiated Molybdenum Disulfide

机译:锂化二硫化钼的相变起源

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摘要

Phase transitions and phase engineering in two-dimensional MoS2 are important for applications in electronics and energy storage. By in situ transmission electron microscopy, we find that H-MoS2 transforms to T-LiMoS2 at the early stages of lithiation followed by the formation of Mo and Li2S phases. The transition from H-MoS2 to T-LiMoS2 is explained in terms of electron doping and electronphonon coupling at the conduction band minima. Both are essential for the development of two-dimensional semiconductor-metal contacts based on MoS2 and the usage of MoS2 as anode material in Li ion batteries.
机译:二维MoS2中的相变和相工程对于电子和能量存储中的应用很重要。通过原位透射电子显微镜,我们发现H-MoS2在锂化的早期转变为T-LiMoS2,然后形成Mo和Li2S相。从H-MoS2到T-LiMoS2的跃迁用导带极小处的电子掺杂和电子声子耦合来解释。两者对于基于MoS2的二维半导体-金属触点的开发以及在Li离子电池中使用MoS2作为阳极材料都是必不可少的。

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