Lin Xuhui, Zhang Huaiyu, Jiang Xiaoyu, Wu Wei, Mo Yirong
The State Key Laboratory of Physical Chemistry of Solid Surfaces, iChEM, Fujian Provincial Key Laboratory of Theoretical and Computational Chemistry and College of Chemistry and Chemical Engineering, Xiamen University , Xiamen, Fujian 361005, China.
College of Ecological Environment and Urban Construction, Fujian University of Technology , Fuzhou 350108, China.
J Phys Chem A. 2017 Nov 9;121(44):8535-8541. doi: 10.1021/acs.jpca.7b09425. Epub 2017 Oct 26.
The concept of resonance-assisted hydrogen bond (RAHB) has been widely accepted, and its impact on structures and energetics can be best studied computationally using the block-localized wave function (BLW) method, which is a variant of ab initio valence bond (VB) theory and able to derive strictly electron-localized structures self-consistently. In this work, we use the BLW method to examine a few molecules that result from the merging of two malonaldehyde molecules. As each of these molecules contains two hydrogen bonds, these intramolecular hydrogen bonds may be cooperative or anticooperative, depended on their relative orientations, and compared with the hydrogen bond in malonaldehyde. Apart from quantitatively confirming the concept of RAHB, the comparison of the computations with and without π resonance shows that both σ-framework and π-resonance contribute to the nonadditivity in these RAHB systems with multiple hydrogen bonds.
共振辅助氢键(RAHB)的概念已被广泛接受,其对结构和能量学的影响可以使用块定域波函数(BLW)方法通过计算得到最佳研究,该方法是从头算价键(VB)理论的一个变体,能够自洽地推导出严格的电子定域结构。在这项工作中,我们使用BLW方法研究了一些由两个丙二醛分子合并而成的分子。由于这些分子中的每一个都包含两个氢键,这些分子内氢键可能是协同的或反协同的,这取决于它们的相对取向,并与丙二醛中的氢键进行比较。除了定量地证实RAHB的概念外,有π共振和无π共振的计算结果比较表明,σ框架和π共振都对这些具有多个氢键的RAHB系统中的非加和性有贡献。