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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Electronic and geometric structure analysis of neutral and anionic alkali metal complexes of the CX series (X = O, S, Se, Te, Po): The case of M(CX)(n=1-4) (M = Li, Na) and their dimers
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Electronic and geometric structure analysis of neutral and anionic alkali metal complexes of the CX series (X = O, S, Se, Te, Po): The case of M(CX)(n=1-4) (M = Li, Na) and their dimers

机译:CX系列中性和阴离子碱金属配合物的电子和几何结构分析(X = O,S,SE,TE,PO):m(cx)的情况(n = 1-4)(m = li,na )他们的二聚体

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摘要

Bonding mechanisms, potential energy curves, accurate structures, energetics, and electron affinities are obtained for all M(CX)(1-3) species with M = Li, Na, and X = O, S, Se, Te, and Po, at the coupled-cluster level with triple-zeta quality basis sets. We discuss and rationalize the trends within different molecular groups. For example, we found larger binding energies for M = Li, for CX = CPo, and for the tri-coordinated (n = 3) complexes. All three facts are explained by the fact that the global minimum of the titled complexes originate from the first excited P-2 (2p(1) for Li or 3p(1) for Na) state of the metal, with each ligand forming a dative bond with the metal. All of the complexes, except Na(CO)(3), have stable anions, and their electron affinity increases as MCX < M(CX)(3) < M(CX)(2). This sequence is attributed to the binding modes of these complexes. The Li(CO)(3) and Li(CS)(3) complexes are able to accommodate a fourth ligand, which is attached to the system electrostatically. Finally, two Li(CO)(3) molecules can bind together covalently to make the ethane analog. The staggered conformer was found lower in energy and unlike ethane the CO ligands bend toward the neighboring Li(CO)(3) moiety. (c) 2019 Wiley Periodicals, Inc.
机译:粘合机制,潜在的能量曲线,准确的结构,能量学和电子亲伴是M = Li,Na,Na,S,Se,Te和Po的所有M(CX)(1-3)种,在耦合群级别,三级Zeta质量基集。我们讨论并合理化不同分子组内的趋势。例如,我们发现了M = Li的更大的绑定能量,用于CX = CPO,以及用于三重协调(n = 3)复合物。所有三个事实都是由标题复合物的全局最小值来自第一激发的p-2(2p(1)的Li或3p(1)的Na)状态,每个配体形成Dative与金属粘合。除Na(CO)(3)之外的所有复合物具有稳定的阴离子,并且它们的电子亲和增加为MCX

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