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首页> 外文期刊>International Journal of Quantum Chemistry >Novel silicon nanorings: Persilacyclacenes at DFT
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Novel silicon nanorings: Persilacyclacenes at DFT

机译:新型硅纳米环:DFT上的Persilacyclacenes

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Structures, energies, and aromatic characters are compared and contrasted for a series of [n]persilacyclacenes with n = 6-12: Si24H12, Si28H14, Si32H16,Si36H18, Si40H20, and Si48H24, respectively, at B3LYP levels (n, number of fused benzenoid rings). These are a brand of silicon nanorings that bear a resemblance to the shortest zig-zag silicon nanotubes (SiNTs), henceforth referred to as SiNRs. The NBO results show nearly SP2 -hybridization for virtually all Si atoms of our SiNRs. This is in contrast to most reports where Sp(3) -hybridization is proposed for typical SiNTs. Comparison between the optimized SiNRs and their corresponding planar (polyacenic) forms shows longer bond lengths for the former, due to their curvatures. Except for sterically hindered Si-24,H-12 (n = 6), all even SiNRs (n = 8, 10, and 12), are more aromatic than the odd ones (n = 7, 9, and 11). Such a higher aromaticity is witnessed inside, outside, and on the surface of the scrutinized SiNRs. Also, except for Si44H22 (n = 11), the energy gaps (Delta EHOMO-LUMO) for the odd set of SiNRs, as well as the even set, appear inversely proportional to their corresponding diameters, per se. Except for the sterically hindered SiNRs with n = 6 or 7, all the even SiNRs enjoy a higher stability (aromaticity) and conductivity for showing lower Delta EHOMO-LUMO than the odd ones. Evidently, the ideal diameter for persilacyclacenes (SiNRs) studied is from 0.92 to 1.42 nm, corresponding to n = 8-12, respectively. Higher than 1.42 nm causes structural disorders while lower than 0.92 brings about bond localization due to the high-steric effects. (c) 2007 Wiley Periodicals, Inc.
机译:比较和对比了一系列n = 6-12的[n]硅杂环并烷的结构,能量和芳族特征:分别在B3LYP浓度下,Si24H12,Si28H14,Si32H16,Si36H18,Si40H20和Si48H24(n,稠合数)苯环)。这些是硅纳米环品牌,与最短的之字形硅纳米管(SiNT)类似,此后称为SiNR。 NBO结果表明,几乎我们的SiNR的所有Si原子都进行了SP2杂化。这与大多数针对典型SiNT提出Sp(3)杂交的报告形成了鲜明对比。经过优化的SiNRs及其对应的平面(聚乙炔)形式之间的比较显示,前者由于其曲率而具有更长的键长。除了位阻Si-24,H-12(n = 6)外,所有偶数SiNR(n = 8、10和12)比奇数(n = 7、9和11)更芳香。在经过仔细检查的SiNR的内部,外部和表面都可以看到如此高的芳香性。此外,除了Si44H22(n = 11)以外,奇数个SiNR和偶数个SiNR的能隙(Delta EHOMO-LUMO)本身与其对应的直径成反比。除了n = 6或7的空间受阻的SiNR外,所有偶数SiNR都具有更高的稳定性(芳香性)和电导率,从而显示出比奇数更低的Delta EHOMO-LUMO。显然,所研究的Persilacyclacenes(SiNRs)的理想直径为0.92至1.42 nm,分别对应于n = 8-12。高于1.42nm会导致结构紊乱,而低于0.92nm会由于高空间效应而导致键定位。 (c)2007年Wiley Periodicals,Inc.

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