硅烯
石墨烯
材料科学
锂(药物)
离子
电场
化学物理
分子动力学
阳极
凝聚态物理
纳米技术
计算化学
物理
电极
化学
物理化学
医学
量子力学
内分泌学
作者
А. Е. Галашев,O. R. Rakhmanova,Yu. P. Zaikov
标识
DOI:10.1134/s1063783416090146
摘要
Mechanical properties and stability of two layers of defect silicene supported by graphene sheets, between which the lithium ion passes under an electrostatic field, are studied by the molecular dynamics method. Defects are mono-, di-, tri-, and hexavacansies. Graphene and silicene edges are rigidly fixed. Graphene sheets contacting with silicene take a convex shape, deflecting outward. Mono- and divacancies in silicene tend to a size decrease; larger vacancies exhibit better stability. The ion motion control using an electric field becomes possible only using perfect silicene or silicene with mono- and divacancies. The ion penetrated through larger defects, and its motion in the silicene channel becomes uncontrolled. When the ion moves in the channel, the most strong stress spikes appear in silicene containing monovacancies. In the case of fixed edges, perfect silicene intercalated with a lithium ion is inclined to accumulate larger stresses than silicene containing defects.
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