Shukla Rahul, Chopra Deepak
Crystallography and Crystal Chemistry Laboratory Department of Chemistry, Indian Institute of Science Education and Research Bhopal , Bhopal 462066, Madhya Pradesh, India.
J Phys Chem B. 2015 Nov 25;119(47):14857-70. doi: 10.1021/acs.jpcb.5b08684. Epub 2015 Nov 11.
In this article, we have examined the effect of substitution on the formation of neutral XHSe···O/N (X = -H, -F, -CH3, -CF3, -Cl, -OH, -OCH3, -NH2, -NHCH3, -CN) noncovalent bonds with the oxygen atom from H2O molecule and the nitrogen atom from NH3 being the electron donor atoms, respectively. In addition to this, analysis has also been performed on XMeSe···O/N complexes to study the effect of the role of hydrogen bonding with the hydrogen atoms of the methyl group on Se···O/N interactions. Binding energy calculations were performed to determine the strength of these contacts. The obtained results establish the fact that the presence of a methyl group influences the strength of the observed Se···O/N interactions. Also in some cases, the O-H···Se interaction was observed to be more preferable over the Se···O interaction. The major contribution for stabilization of such Se···O/N interactions is from an interplay among the electrostatics and the exchange energy. To obtain deeper insights and understanding of such Se···O/N contacts, a topological analysis, using the QTAIM approach were also performed. This analysis showed that although the presence of a Me group modifies the Se···O/N interaction, it does not necessitate the formation of hydrogen bonds. To obtain insights into the orbital contributions, a natural bond orbital (NBO) analysis were performed which depicts that the strength of such interactions were derived via charge transfer from the oxygen/nitrogen lone pair to the σ* orbital of the Se-X bond.
在本文中,我们研究了取代基对中性XHSe···O/N(X = -H、-F、-CH3、-CF3、-Cl、-OH、-OCH3、-NH2、-NHCH3、-CN)非共价键形成的影响,其中氧原子来自H2O分子,氮原子来自NH3分子,它们分别作为电子供体原子。除此之外,还对XMeSe···O/N配合物进行了分析,以研究甲基氢原子形成的氢键对Se···O/N相互作用的影响。通过计算结合能来确定这些相互作用的强度。所得结果证实了甲基的存在会影响所观察到的Se···O/N相互作用的强度。此外,在某些情况下,观察到O-H···Se相互作用比Se···O相互作用更占优势。这种Se···O/N相互作用稳定的主要贡献来自静电作用和交换能之间的相互作用。为了更深入地了解和认识这种Se···O/N相互作用,还使用QTAIM方法进行了拓扑分析。该分析表明,虽然甲基的存在改变了Se···O/N相互作用,但并不一定会形成氢键。为了深入了解轨道贡献,进行了自然键轨道(NBO)分析,结果表明这种相互作用的强度是通过从氧/氮孤对向Se-X键的σ*轨道的电荷转移而产生的。