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Theoretical investigation on charge-assisted halogen bonding interactions in the complexes of bromocarbons with some anions

机译:溴碳与某些阴离子配合物中电荷辅助卤素键相互作用的理论研究

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摘要

A series of dimeric complexes formed between bromocarbon molecules and two anions (Br- and CN-) have been investigated by using MP2 method. The quantum theory of atoms in molecules (QTAIM) and the second-order perturbation natural bond orbital (NBO) approaches were applied to analyze the electron density distributions of these complexes and to explore the nature of charge-assisted halogen bonding interactions. As anticipated, these interactions are significantly stronger relative to the corresponding neutral ones. The results derived from ab initio calculations described herein reveal a major contribution from the electrostatic interaction on the stability of the systems considered. Beside the electrostatic interaction, the charge-transfer force and the second-order orbital interaction also play an important role in the formation of the complexes, as a NBO analysis suggested. The presence of halogen bonds in the complexes has been identified in terms of the QTAIM methodology, and several linear relationships have been established to provide more insight into charge-assisted halogen bonding interactions. (C) 2007 Wiley Periodicals, Inc.
机译:溴碳分子和两个阴离子(Br-和CN-)之间形成的一系列二聚体配合物已通过MP2方法进行了研究。分子中的原子量子理论(QTAIM)和二级扰动自然键轨道(NBO)方法被用于分析这些络合物的电子密度分布,并探索电荷辅助卤素键相互作用的性质。如所预期的,这些相互作用相对于相应的中性相互作用明显更强。从本文所述的从头算计算得出的结果表明,静电相互作用对所考虑系统的稳定性有重要贡献。如NBO分析所示,除静电相互作用外,电荷转移力和二阶轨道相互作用在复合物的形成中也起着重要作用。已根据QTAIM方法确定了配合物中卤素键的存在,并建立了几种线性关系以提供对电荷辅助卤素键相互作用的更多了解。 (C)2007 Wiley期刊公司

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