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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Chemical origin of blue and red shifts of C-H stretching vibrations in M+-C2H2 (M = V, Fe, Co, Ni) and M+-C6H6 (M = V, Si, Ni) complexes
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Chemical origin of blue and red shifts of C-H stretching vibrations in M+-C2H2 (M = V, Fe, Co, Ni) and M+-C6H6 (M = V, Si, Ni) complexes

机译:M + -C2H2(M = V,Fe,Co,Ni)和M + -C6H6(M = V,Si,Ni)络合物中C-H拉伸振动的蓝移和红移的化学起源

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摘要

M+-C2H2 (M = V, Fe, Co, Ni) and M+-C6H6 (M = V, Si. Ni) complexes were studied by using density functional theory at the B3LYP/6-311 +G** and B3LYP/6-311 ++G** levels, respectively. In M+-C2H2 Complexes, the C-H bond lengths display an increase with a concomitant red shift of C-H stretch frequencies, while in M+-C6H6 complexes the C-H bonds exhibit contraction accompanied by the blue shift of C-H stretch frequencies. These frequency shifts are well consistent with experimental results. To account for the interesting changes of C-H vibrations in M+-C2H2/C6H6, the natural bond orbital analysis was carried out. The NBO results suggest that both the red and blue shifts are attributed to changes of electron density in sigma*CH and s-character of carbon in C-H bond. Our conclusion is that electron density redistribution and rehybridization are the chemical origin of these two types of frequency shifts ill M+-C2H2/C6H6 complexes.
机译:通过使用密度泛函理论在B3LYP / 6-311 + G **和B3LYP / 6上研究了M + -C2H2(M = V,Fe,Co,Ni)和M + -C6H6(M = V,Si.Ni)配合物分别为-311 ++ G **。在M + -C2H2配合物中,C-H键的长度随C-H拉伸频率的红移而增加,而在M + -C6H6配合物中,C-H键的收缩伴随C-H拉伸频率的蓝移。这些频移与实验结果非常一致。为了解释M + -C2H2 / C6H6中C-H振动的有趣变化,进行了自然键轨道分析。 NBO结果表明,红移和蓝移均归因于sigma * CH中电子密度的变化和C-H键中碳的s特性的变化。我们的结论是,电子密度的重新分布和再杂交是M + -C2H2 / C6H6络合物这两种类型的频移的化学起源。

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