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首页> 外文期刊>Journal of Electronic Materials >Mechanical Properties of Two-Dimensional Materials (Graphene, Silicene and MoS(2)Monolayer) Upon Lithiation
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Mechanical Properties of Two-Dimensional Materials (Graphene, Silicene and MoS(2)Monolayer) Upon Lithiation

机译:二维材料(石墨烯,硅和MOS(2)单层锂电片的机械性能

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摘要

The mechanical stability of electrode materials in lithium-ion batteries (LIBs) is critical for their safe usage. Two-dimensional (2D) materials have been widely studied to be used as electrode materials for LIBs. In this paper, the mechanical properties of several typical 2D materials, including graphene, silicene and MoS(2)monolayer upon lithium intercalation were studied, based on the density functional theory calculations with the model developed by Topsakal and Ciraci (Appl Phys Lett 96:091912, 2010). It was found that the in-plane stiffness of 2D materials decreases with increases of lithium concentration. In-plane stiffness decreased about 9.8% at lithium concentration of 0.184 Li/A(2)for graphene and 6.0% at a concentration of 0.153 Li/A(2)for silicene. The evolution of in-plane stiffness of MoS(2)monolayer as a function of lithium concentration and electron-doping concentration were compared. The in-plane stiffness of MoS(2)monolayer decreased with increases of Li and electron concentration, which revealed that the electron doping effect is the mechanism causing the decrease of the mechanical stability of electrode materials upon lithiation.
机译:锂离子电池(LIBS)中电极材料的机械稳定性对于他们的安全使用至关重要。二维(2D)材料已广泛研究用作Libs的电极材料。在本文中,研究了几种典型2D材料的机械性能,包括石墨烯,硅和MOS(2)单层,基于锂嵌入锂嵌入,基于Topsakal和Ciraci开发的模型(Appl Phys Lett 96: 091912,2010)。发现2D材料的面内刚度随锂浓度的增加而降低。平面刚度在锂浓度为0.184LI / A(2)的锂浓度下降低了约9.8%,硅烯浓度为0.153 Li / A(2)。比较了MOS(2)单层作为锂浓度和电子掺杂浓度的函数的平面内刚度的演变。 MOS(2)单层的平面刚度随着LI和电子浓度的增加而降低,揭示电子掺杂效果是在锂化时导致电极材料的机械稳定性降低的机理。

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