School of Chemistry & Chemical Engineering, Shaanxi Normal University, Xi'an, 710119, China.
Institute of Chemistry, The Hebrew University, Jerusalem, 91904, Israel.
J Comput Chem. 2019 Apr 5;40(9):1015-1022. doi: 10.1002/jcc.25566. Epub 2018 Oct 3.
Intermolecular attractive interaction between electrophilic sites is a counterintuitive phenomenon, as the electrostatic interaction therein is repulsive and destabilizing. Here, we confirm this phenomenon in four representative complexes, using state-of-the-art quantum mechanical methods. By employing the block-localized wavefunction (BLW) method, which can turn off intermolecular charge transfer interactions, we profoundly demonstrated the significance of charge transfer interactions in these seemingly counterintuitive complexes. Indeed, after being "turned off" the intermolecular charge transfer interaction in, for example, the FNSi···BrF complex, the originally attractive intermolecular interaction turns to be repulsive. The energy decomposition approach based on the BLW method (BLW-ED) can partition the overall stability gained on the formation of intermolecular noncovalent interaction into several physically meaningful components. According to the BLW-ED analysis, the electrostatic repulsion in these counterintuitive cases is overwhelmed by the stabilizing polarization, dispersion interaction, and most importantly, the charge transfer interaction, resulting in the eventual counterintuitive overall attraction. The present study suggests that, predicting bonding sites of noncovalent interactions using only the "hole" concept may be not universally sufficient, because other significant stabilizing factors will contribute to the stability and sometimes, play even bigger roles than the electrostatic interaction and consequently govern the complex structures. © 2018 Wiley Periodicals, Inc.
分子间的亲电中心的吸引相互作用是一种违反直觉的现象,因为其中的静电相互作用是排斥和不稳定的。在这里,我们使用最先进的量子力学方法在四个代表性的复合物中证实了这一现象。通过采用可以关闭分子间电荷转移相互作用的块局域波函数(BLW)方法,我们深刻地证明了电荷转移相互作用在这些看似违反直觉的复合物中的重要性。事实上,在例如 FNSi···BrF 复合物中,“关闭”了分子间的电荷转移相互作用后,原本吸引的分子间相互作用就变成了排斥。基于 BLW 方法的能量分解方法(BLW-ED)可以将形成分子间非共价相互作用所获得的整体稳定性分为几个具有物理意义的分量。根据 BLW-ED 分析,这些违反直觉的情况下的静电排斥被稳定的极化、色散相互作用以及最重要的电荷转移相互作用所克服,从而导致最终违反直觉的整体吸引力。本研究表明,仅使用“孔”概念来预测非共价相互作用的成键位点可能不是普遍充分的,因为其他重要的稳定因素也会对稳定性产生贡献,有时甚至比静电相互作用更为重要,从而决定了复合物的结构。©2018 威利父子公司