硅烯
硅
锂(药物)
化学物理
扩散
离子
材料科学
石墨烯
背景(考古学)
结合能
扩散阻挡层
密度泛函理论
纳米技术
图层(电子)
化学
计算化学
原子物理学
光电子学
热力学
有机化学
内分泌学
生物
医学
古生物学
物理
作者
Georgios A. Tritsaris,Efthimios Kaxiras,Sheng Meng,Enge Wang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2013-04-19
卷期号:13 (5): 2258-2263
被引量:452
摘要
The energy density of Li-ion batteries depends critically on the specific charge capacity of the constituent electrodes. Silicene, the silicon analogue to graphene, being of atomic thickness could serve as high-capacity host of Li in Li-ion secondary batteries. In this work, we employ first-principles calculations to investigate the interaction of Li with Si in model electrodes of free-standing single-layer and double-layer silicene. More specifically, we identify strong binding sites for Li, calculate the energy barriers accompanying Li diffusion, and present our findings in the context of previous theoretical work related to Li-ion storage in other structural forms of silicon: the bulk and nanowires. The binding energy of Li is ~2.2 eV per Li atom and shows small variation with respect to Li content and silicene thickness (one or two layers) while the barriers for Li diffusion are relatively low, typically less than 0.6 eV. We use our theoretical findings to assess the suitability of two-dimensional silicon in the form of silicene layers for Li-ion storage.
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