Cybulski Hubert, Tymińska Elwira, Sadlej Joanna
Department of Chemistry, University of Warsaw, Pasteura 1, 02-093 Warsaw, Poland.
Chemphyschem. 2006 Mar 13;7(3):629-39. doi: 10.1002/cphc.200500462.
The properties of six dihydrogen-bonded (DHB) dimers with the BeH2 molecule as a proton acceptor were calculated by MP2, CCSD(T) and B3LYP methods. The structural, energetic and spectroscopic parameters are presented and analyzed in terms of their possible correlation with the interaction energy and the intermolecular H...H separation. The symmetry-adapted perturbation theory (SAPT) calculations were performed to gain more insight into the nature of the H...H interactions. The studied complexes are divided into three groups based on the calculated intermolecular distances and the interaction energies which range from approximately -1 to -42 kJ mol(-1). The analysis of the interaction energy components indicates that, in contrast to conventional hydrogen bonds, the induction energy is the most important term in the BeH2NH4+ complex. On the other hand, there is no sharp boundary between the DHB complexes classified as hydrogen bonded and van der Waals systems. The complexation-induced changes in vibrational frequencies and in proton shielding constants show a relationship with the interaction energy. The values of the 2hJXH and 3hJBeX coupling constants correlate well with the interaction energy and with the intermolecular distance.
采用MP2、CCSD(T)和B3LYP方法计算了以BeH₂分子作为质子受体的六种双氢键(DHB)二聚体的性质。根据结构、能量和光谱参数与相互作用能及分子间H…H间距的可能相关性进行了呈现和分析。进行了对称适配微扰理论(SAPT)计算,以更深入了解H…H相互作用的本质。根据计算出的分子间距离和范围约为-1至-42 kJ mol⁻¹的相互作用能,将所研究的配合物分为三组。相互作用能成分分析表明,与传统氢键不同,诱导能在BeH₂NH₄⁺配合物中是最重要的项。另一方面,归类为氢键配合物和范德华体系的DHB配合物之间没有明显界限。振动频率和质子屏蔽常数的络合诱导变化与相互作用能存在关联。2hJXH和3hJBeX耦合常数的值与相互作用能和分子间距离有很好的相关性。