Instituto de Química Médica, CSIC, Madrid, Spain.
Chemphyschem. 2012 Feb;13(2):496-503. doi: 10.1002/cphc.201100830. Epub 2012 Jan 17.
A theoretical study of the HTeXH (X=O, S, Se and Te) monomers and homodimers was carried out by means of second-order Møller-Plesset perturbation theory (MP2) computational methods. In the case of monomers, the isomerization energy from HTeXH to H(2) Te=X and H(2) X=Te (X=O, S, Se, and Te) and the rotational transition-state barriers were obtained. Due to the chiral nature of these compounds, homo and heterochiral dimers were found. The electron density of the complexes was characterized with the atoms-in-molecules (AIM) methodology, finding a large variety of interactions. The charge transfer within the dimers was analyzed by means of natural bond orbitals (NBO). The density functional theory-symmetry adapted perturbation theory (DFT-SAPT) method was used to compute the components of the interaction energies. Hydrogen bonds and chalcogen-chalcogen interactions were characterized and their influence analyzed concerning the stability and chiral discrimination of the dimers.
采用二阶微扰理论(MP2)计算方法对 HTeXH(X=O、S、Se 和 Te)单体和同二聚体进行了理论研究。在单体的情况下,获得了从 HTeXH 到 H(2)Te=X 和 H(2)X=Te(X=O、S、Se 和 Te)的异构化能和旋转过渡态势垒。由于这些化合物具有手性,因此发现了同手性和异手性二聚体。使用分子中的原子(AIM)方法对配合物的电子密度进行了表征,发现了多种相互作用。通过自然键轨道(NBO)分析了二聚体中的电荷转移。采用密度泛函理论-对称自适应微扰理论(DFT-SAPT)方法计算了相互作用能的分量。对氢键和硫属元素-硫属元素相互作用进行了表征,并分析了它们对二聚体稳定性和手性分辨的影响。