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Theoretical study of the HXYH dimers (X,Y=O, S, Se). Hydrogen bonding and chalcogen-chalcogen interactions

机译:HXYH二聚体(X,Y = O,S,Se)的理论研究。氢键和硫族元素-硫族元素的相互作用

摘要

A theoretical study of the HXYH (X, Y=O, S and Se) monomers and dimers has been carried out by means of MP2 computational methods. For the monomers, isomerization (H 2X=Y//HXYH) and rotational transition state barriers have been calculated. Additionally, the molecular electrostatic potential of the isolated monomers has also been analysed. Due to the chiral nature of these compounds, homo and heterochiral dimers have been explored. The number of minima found for the dimers range between 13 and 22. The electron density of the complexes has been characterized with the Atoms in Molecules (AIM) methodology finding a large variety of interactions. The DFT-SAPT method has been used to analyse the components of the interaction energies. Concerning chalcogen-chalcogen interactions, although the most stable minima are formed through hydrogen bonds (especially if OH groups are present in the molecules) as the size of the atoms involved in the interaction increase, the chalcogen-chalcogen contacts become more important. Copyright © 2011 Taylor and Francis Group, LLC.
机译:已通过MP2计算方法对HXYH(X,Y = O,S和Se)单体和二聚体进行了理论研究。对于单体,已经计算出异构化(H 2X = Y // HXYH)和旋转过渡态势垒。另外,还分析了分离出的单体的分子静电势。由于这些化合物的手性,已经研究了同手性和杂手性二聚体。二聚体的极小值范围在13到22之间。配合物的电子密度已通过分子原子(AIM)方法进行了表征,发现了多种相互作用。 DFT-SAPT方法已用于分析相互作用能的成分。关于硫族元素-硫族元素的相互作用,尽管最稳定的极小值是通过氢键(特别是如果分子中存在OH基团)形成的,因为参与相互作用的原子的大小增加了,但硫族元素-硫族元素的接触变得更为重要。版权所有©2011 Taylor and Francis Group,LLC。

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