Department of Biological, Chemical and Physical Sciences, Roosevelt University, 430 S. Michigan Ave, Chicago, IL 60605, USA.
Chemistry. 2013 Jul 1;19(27):8774-88. doi: 10.1002/chem.201300577. Epub 2013 Jun 11.
The nature of halogen bonding is examined via experimental and computational characterizations of a series of associates between electrophilic bromocarbons R-Br (R-Br=CBr3F, CBr3NO2, CBr3COCBr3, CBr3CONH2, CBr3CN, etc.) and bromide anions. The [R-Br, Br(-)] complexes show intense absorption bands in the 200-350 nm range which follow the same Mulliken correlation as those observed for the charge-transfer associates of bromide anions with common organic π-acceptors. For a wide range of the associates, intermolecular R-Br···Br(-) separations decrease and intramolecular C-Br bond lengths increase proportionally to the Br(-)→R-Br charge transfer; and the energies of R-Br···Br(-) bonds are correlated with the linear combination of orbital (charge-transfer) and electrostatic interactions. On the whole, spectral, structural and thermodynamic characteristics of the [R-Br, Br(-)] complexes indicate that besides electrostatics, the orbital (charge-transfer) interactions play a vital role in the R-Br···Br(-) halogen bonding. This indicates that in addition to controlling the geometries of supramolecular assemblies, halogen bonding leads to electronic coupling between interacting species, and thus affects reactivity of halogenated molecules, as well as conducting and magnetic properties of their solid-state materials.
通过对一系列亲电溴代碳 R-Br(R-Br=CBr3F、CBr3NO2、CBr3COCBr3、CBr3CONH2、CBr3CN 等)与溴化物阴离子之间形成的配合物的实验和计算特性研究,考察了卤素键的性质。[R-Br, Br(-)]配合物在 200-350nm 范围内显示出强烈的吸收带,这些吸收带与观察到的溴化物阴离子与常见有机π受体形成的电荷转移配合物的 Mulliken 相关性相同。对于广泛的配合物,分子间的 R-Br···Br(-)分离距离减小,而分子内的 C-Br 键长与 Br(-)→R-Br 电荷转移成正比增加;并且 R-Br···Br(-)键的能量与轨道(电荷转移)和静电相互作用的线性组合相关。总的来说,[R-Br, Br(-)]配合物的光谱、结构和热力学特性表明,除静电相互作用外,轨道(电荷转移)相互作用在 R-Br···Br(-)卤素键合中起着至关重要的作用。这表明,卤素键除了控制超分子组装的几何形状外,还导致相互作用物种之间的电子耦合,从而影响卤化分子的反应性以及其固态材料的导电和磁性。