Eenheid Algemene Chemie (ALGC), Member of the QCMM VUB-UGent Alliance Research Group, Vrije Universiteit Brussel, Pleinlaan 2, Brussels, Belgium.
Chemistry. 2013 Jan 7;19(2):519-30. doi: 10.1002/chem.201202567. Epub 2012 Nov 21.
Halogen bonds between the trifluoromethyl halides CF(3)Cl, CF(3)Br and CF(3)I, and dimethyl ether, dimethyl sulfide, trimethylamine and trimethyl phosphine were investigated using Pearson's hard and soft acids and bases (HSAB) concept with conceptual DFT reactivity indices, the Ziegler-Rauk-type energy-decomposition analysis, the natural orbital for chemical valence (NOCV) framework and the non-covalent interaction (NCI) index. It is found that the relative importance of electrostatic and orbital (charge transfer) interactions varies as a function of both the donor and acceptor molecules. Hard and soft interactions were distinguished and characterised by atomic charges, electrophilicity and local softness indices. Dual-descriptor plots indicate an orbital σ hole on the halogen similar to the electrostatic σ hole manifested in the molecular electrostatic potential. The predicted high halogen-bond-acceptor affinity of N-heterocyclic carbenes was evidenced in the highest complexation energy for the hitherto unknown CF(3) I·NHC complex. The dominant NOCV orbital represents an electron-density deformation according to a n→σ*-type interaction. The characteristic signal found in the reduced density gradient versus electron-density diagram corresponds to the non-covalent interaction between contact atoms in the NCI plots, which is the manifestation of halogen bonding within the NCI theory. The unexpected C-X bond strengthening observed in several cases was rationalised within the molecular orbital framework.
三氟甲基卤化物(CF3Cl、CF3Br 和 CF3I)与二甲醚、二甲硫醚、三甲胺和三甲基膦之间的卤素键,使用 Pearson 的硬软酸碱(HSAB)概念与概念性密度泛函理论反应性指数、Ziegler-Rauk 型能量分解分析、自然轨道价键(NOCV)框架和非共价相互作用(NCI)指数进行了研究。结果表明,静电和轨道(电荷转移)相互作用的相对重要性随供体和受体分子的变化而变化。硬软相互作用通过原子电荷、电负性和局部软度指数进行区分和表征。双描述符图表明,卤素上存在轨道 σ 空穴,类似于分子静电势中表现出的静电 σ 空穴。预测 N-杂环卡宾具有高卤素键受体亲和力,在迄今为止未知的 CF3I·NHC 配合物中表现出最高的络合能。主导的 NOCV 轨道代表根据 n→σ*-型相互作用的电子密度变形。在电子密度图中,在约化密度梯度与电子密度图之间找到的特征信号对应于 NCI 图中接触原子之间的非共价相互作用,这是非共价相互作用理论中卤素键的表现形式。在几种情况下观察到的 C-X 键增强被合理化在分子轨道框架内。