An Xiulin, Jiang Lixia, Li Qingzhong, Li Wenzuo, Cheng Jianbo
College of Life Science, Yantai University, Yantai 264005, People's Republic of China.
Foreign Language College, Heibei North University, Zhangjiakou 075100, People's Republic of China.
Spectrochim Acta A Mol Biomol Spectrosc. 2015 Mar 5;138:195-202. doi: 10.1016/j.saa.2014.11.064. Epub 2014 Nov 28.
Ab initio calculations have been carried out for the complexes of formamidine (FA) and some representative halogenated molecules XY (X=Cl, Br, and I; Y=F, CCH, CF3, CN, and NC). The FA-(Z) complex combines with the halogenated molecule through a halogen bond, while the FA-(E) complex is stabilized jointly by both a halogen bond and a X⋯H interaction. The FA-(E) complex is more stable than the FA-(Z) counterpart, with the interaction energy of -3.4 to -23.4kcal/mol, indicating that FA is a good electron donor in halogen bonding. The methyl substituent particularly one at the imino nitrogen atom of FA has an enhancing effect on the strength of halogen bond. The similar effect is found for the phenyl and pyridyl substituents, depending on the FA conformation and substitution position of pyridyl. The stability of stronger halogen bonding is mainly attributed to electrostatic and polarization energies, which is different from the weak one with an electrostatic nature.
对甲脒(FA)与一些具有代表性的卤代分子XY(X = Cl、Br和I;Y = F、CCH、CF₃、CN和NC)形成的配合物进行了从头算计算。FA-(Z)配合物通过卤键与卤代分子结合,而FA-(E)配合物则通过卤键和X⋯H相互作用共同稳定。FA-(E)配合物比FA-(Z)配合物更稳定,相互作用能为-3.4至-23.4kcal/mol,表明FA在卤键中是良好的电子供体。甲基取代基,特别是在FA的亚氨基氮原子上的甲基取代基,对卤键强度有增强作用。对于苯基和吡啶基取代基也发现了类似的效果,这取决于FA的构象和吡啶基的取代位置。较强卤键的稳定性主要归因于静电能和极化能,这与具有静电性质的弱卤键不同。