首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Vibrational spectrum and structure of CoO_6: A model compound for molecular oxygen reversible binding on cobalt oxides and salts; A combined IR matrix isolation and theoretical study
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Vibrational spectrum and structure of CoO_6: A model compound for molecular oxygen reversible binding on cobalt oxides and salts; A combined IR matrix isolation and theoretical study

机译:CoO_6的振动光谱和结构:分子氧可逆结合在氧化钴和盐上的模型化合物;红外矩阵隔离与理论研究相结合

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摘要

The formation and structure of a novel species, a disuperoxo-cobalt dioxide complex (CoO_6), has been investigated using matrix isolation in solid neon and argon, coupled to infrared spectroscopy and by quantum chemical methods. It is found that CoO_6 can be formed by successive complexation of cobalt dioxide by molecular oxygen without activation energy by diffusion of ground state O_2 molecules at 9K in the dark. The IR data on one combination and seven fundamentals, isotopic effects, and quantum chemical calculations are both consistent with an asymmetrical structure with two slightly nonequivalent oxygen ligands complexing a cobalt dioxide subunit. Evidence for other, metastable states is also presented, but the data are not complete. The electronic structure and formation pathway of this unique, formally +VI oxidation state, complex has been investigated using several functionals of current DFT within the broken-symmetry unrestricted formalism. It has been shown that the M06L pure local functional well reproduce the experimental observations. The ground electronic state is predicted to be an open shell ~2A″ doublet with the quartet states above by more than 9 kcal/mol and the sextet lying even higher in energy. The ground state has a strong and complex multireference character that hinders the use of more precise multireference approaches and requires caution in the methodology to be used. The geometrical, energetic, and vibrational properties have been computed.
机译:利用固体氖气和氩气中的基质分离,结合红外光谱和量子化学方法,研究了一种新型物质,二超氧-二氧化钴配合物(CoO_6)的形成和结构。发现在黑暗中,基态O_2分子在9K的扩散下,可以通过分子氧连续氧化二氧化钴而没有活化能形成CoO_6。一种组合的红外数据以及七个基本原理,同位素效应和量子化学计算均与具有两个略微不等价的氧配体配合二氧化钴亚基的不对称结构一致。还提供了其他亚稳态的证据,但数据不完整。已使用当前DFT的几种功能(在对称对称的无限制形式中)研究了这种独特的形式+ VI氧化态复合物的电子结构和形成途径。已经证明,M06L纯局部功能良好地再现了实验观察结果。预计地面电子状态将是一个开放的壳〜2A''双峰,其四重态高于9 kcal / mol,而六重态的能量更高。基态具有强大而复杂的多参考特性,这妨碍了使用更精确的多参考方法,并且在使用的方法上需要谨慎。已经计算出几何,能量和振动特性。

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