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XH3P(+)⋯NCY配合物(X = H、F、CN、NH2、OH;Y = H、Li、F、Cl)中的阳离子P⋯N相互作用及其与氢/锂/卤键的协同作用

Cationic P⋯N interaction in XH3P(+)⋯NCY complexes (X=H, F, CN, NH2, OH; Y=H, Li, F, Cl) and its cooperativity with hydrogen/lithium/halogen bond.

作者信息

Esrafili Mehdi D, Asadollahi Soheila

机构信息

Laboratory of Theoretical Chemistry, Department of Chemistry, University of Maragheh, P.O. Box 5513864596, Maragheh, Iran.

Laboratory of Theoretical Chemistry, Department of Chemistry, University of Maragheh, P.O. Box 5513864596, Maragheh, Iran.

出版信息

J Mol Graph Model. 2016 Mar;64:131-138. doi: 10.1016/j.jmgm.2016.01.011. Epub 2016 Feb 2.

Abstract

The geometries, interaction energies and bonding properties of cationic pnicogen bond (CPB) interactions are studied in binary XH3P(+)⋯NCY (X=H, F, CN, NH2, OH; Y=H, Li, F, Cl) complexes by means of MP2/aug-cc-pVTZ calculations. Interaction energies of these binary complexes span a large range, from -16.36kcal/mol in (NH2)H3P(+)⋯NCF to -71.36kcal/mol in FH3P(+)⋯NCLi complex. The spin-spin coupling constant across P⋯N interaction depends considerably on the nature of X and Y substituents. The characteristic of CPB interactions is analyzed in terms of parameters derived from quantum theory of atoms in molecules (QTAIM) and natural bond orbital (NBO) analyses. The charge transfer from the nitrogen base to the cationic acid stabilizes these pnicogen-bonded complexes. For a given XH3P(+), the net charge transfer value increases as the interaction energy of the complex becomes more negative, i.e., NCLi>NCCl>NCH>NCF. Moreover, mutual influence between the CPB and hydrogen/halogen/lithium bond is studied in the ternary XH3P(+)⋯NCY⋯NCH complexes. The results indicate that the formation of a Y⋯N interaction tends to strengthen CPB in the ternary systems.

摘要

通过MP2/aug-cc-pVTZ计算方法,研究了二元XH3P(+)⋯NCY(X = H、F、CN、NH2、OH;Y = H、Li、F、Cl)配合物中阳离子氮族元素键(CPB)相互作用的几何结构、相互作用能和键合性质。这些二元配合物的相互作用能范围很大,从(NH2)H3P(+)⋯NCF中的-16.36千卡/摩尔到FH3P(+)⋯NCLi配合物中的-71.36千卡/摩尔。跨越P⋯N相互作用的自旋-自旋耦合常数在很大程度上取决于X和Y取代基的性质。根据从分子中的原子量子理论(QTAIM)和自然键轨道(NBO)分析得出的参数,对CPB相互作用的特征进行了分析。从氮碱到阳离子酸的电荷转移使这些氮族元素键合的配合物得以稳定。对于给定的XH3P(+),随着配合物相互作用能变得更负,即NCLi>NCCl>NCH>NCF,净电荷转移值增加。此外,在三元XH3P(+)⋯NCY⋯NCH配合物中研究了CPB与氢/卤素/锂键之间的相互影响。结果表明,Y⋯N相互作用的形成倾向于增强三元体系中的CPB。

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