Article ID Journal Published Year Pages File Type
1864254 Physics Letters A 2009 7 Pages PDF
Abstract

We present the results of ab initio   density functional theory calculations on the energetic, and geometric and electronic structure of Li-intercalated (6,66,6) silicon carbide nanotube (SiCNT) bundles. Our results show that intercalation of lithium leads to the significant changes in the geometrical structure. The most prominent effect of Li intercalation on the electronic band structure is a shift of the Fermi energy which occurs as a result of charge transfer from lithium to the SiCNTs. All the Li-intercalated (6,66,6) SiCNT bundles are predicted to be metallic representing a substantial change in electronic properties relative to the undoped bundle, which is a wide band gap semiconductor. Both inside of the nanotube and the interstitial space are susceptible for intercalation. The present calculations suggest that the SiCNT bundle is a promising candidate for the anode material in battery applications.

Related Topics
Physical Sciences and Engineering Physics and Astronomy Physics and Astronomy (General)
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