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Theoretical Insights into the Nature of Halogen Bonding in Prereactive Complexes

机译:对预反应配合物中卤素键的性质的理论认识

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摘要

Benchmark quality geometries and interaction energies for the prereactive halogen-bonded complexes of dihalogens and ammonia, including hypothetical astatine containing dihalogens, have been produced via explicitly correlated coupled cluster methods. The application of local electron correlation partitioning reveals dispersion, electrostatics and ionic substitutions all contribute significantly to the interaction energy, with a linear relationship between the ionic substitutions and the degree of charge transfer. Potential energy curves for H3N⋅⋅⋅ClF show that as the relative orientations of the two subunits are manipulated appreciable interactions can be found at considerably angular displaced geometries, signifying lower directionality in halogen bonding than previously supposed.
机译:已通过显式相关的耦合簇方法生成了二卤素和氨的预反应性卤素键合配合物(包括假设的含stat的二卤素)的基准质量几何形状和相互作用能。局部电子相关分配的应用揭示了色散,静电和离子取代均对相互作用能有显着贡献,离子取代与电荷转移程度之间呈线性关系。 H3N···ClF的势能曲线表明,当两个亚基的相对方向被操纵时,在相当大的角度位移的几何结构上可以发现明显的相互作用,这表明卤素键合的方向性比以前设想的要低。

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