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A periodic density functional theory study on the effects of halides encapsulated in SiC nanotubes

机译:周期性密度泛函理论研究卤化物包裹在SiC纳米管中的作用

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In this paper we present results of density functional theory calculations on the configurations, band structures, and optical properties of halides MCl (M=K,Ag) intercalated single-wall SiC nanotubes. The results show that the M-Cl distances perpendicular to the tube axis are slightly smaller than the ones parallel to the tube axis, which could be due to the axial strain of MCl. The electronic and optical properties of the resulting MCl@SiCNT composite are modified with respect to both the bulk halide and the empty nanotube. It is shown that AgCl affects the structures and properties of SiC nanotubes more significantly than KCl, and that the interaction between the nanotube and the encapsulated halide is stronger for narrower SiC nanotube. The AgCl encapsulation into SiCNTs results in band gap narrowing of AgCl@SiCNTs.
机译:在本文中,我们介绍了关于卤化物MCl(M = K,Ag)插层单壁SiC纳米管的构型,能带结构和光学性质的密度泛函理论计算结果。结果表明,垂直于管轴的M-Cl距离略小于平行于管轴的M-Cl距离,这可能是由于MCl的轴向应变所致。相对于本体卤化物和空纳米管,所得MCl @ SiCNT复合材料的电子和光学性能均得到了改善。结果表明,AgCl对SiC纳米管的结构和性能的影响远大于KCl,并且纳米碳管和封装的卤化物之间的相互作用对于更窄的SiC纳米管更强。将AgCl封装到SiCNT中会导致AgCl @ SiCNT的带隙变窄。

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