Inorganic and Theoretical Chemistry Section, CSTD, CSIR-National Institute for Interdisciplinary Science and Technology , Trivandrum 695 019, India.
J Phys Chem A. 2014 Mar 6;118(9):1697-705. doi: 10.1021/jp4115699. Epub 2014 Feb 17.
Hydrogen, halogen, and dihydrogen bonds in weak, medium and strong regimes (<1 to ∼ 60 kcal/mol) have been investigated for several intermolecular donor-acceptor (D-A) complexes at ab initio MP4//MP2 method coupled with atoms-in-molecules and molecular electrostatic potential (MESP) approaches. Electron density ρ at bond critical point correlates well with interaction energy (Enb) for each homogeneous sample of complexes, but its applicability to the entire set of complexes is not satisfactory. Analysis of MESP minimum (V(min)) and MESP at the nuclei (Vn) shows that in all D-A complexes, MESP of A becomes more negative and that of D becomes less negative suggesting donation of electrons from D to A leading to electron donor-acceptor (eDA) interaction between A and D. MESP based parameter ΔΔVn measures donor-acceptor strength of the eDA interactions as it shows a good linear correlation with Enb for all D-A complexes (R(2) = 0.976) except the strongly bound bridged structures. The bridged structures are classified as donor-acceptor-donor complexes. MESP provides a clear evidence for hydrogen, halogen, and dihydrogen bond formation and defines them as eDA interactions in which hydrogen acts as electron acceptor in hydrogen and dihydrogen bonds while halogen acts as electron acceptor in halogen bonds.
在从头算 MP4//MP2 方法中,氢键、卤键和双氢键在弱、中、强(<1 到 ∼ 60 kcal/mol)区带被用于研究几种分子间给体-受体(D-A)复合物,同时结合原子在分子中和分子静电势(MESP)方法。键临界点处的电子密度 ρ 与每个复合物均匀样本的相互作用能量(Enb)很好地相关,但它对整个复合物集的适用性并不令人满意。对 MESP 最小值(V(min))和核处 MESP(Vn)的分析表明,在所有 D-A 复合物中,A 的 MESP 变得更负,而 D 的 MESP 变得更负,这表明电子从 D 到 A 的转移,导致 A 和 D 之间的电子给体-受体(eDA)相互作用。基于 MESP 的参数 ΔΔVn 衡量了 eDA 相互作用的供体-受体强度,因为它与所有 D-A 复合物的 Enb 呈良好的线性相关(R(2) = 0.976),除了强结合的桥接结构。桥接结构被分类为供体-受体-供体复合物。MESP 为氢键、卤键和双氢键的形成提供了明确的证据,并将它们定义为 eDA 相互作用,其中氢键在氢键和双氢键中充当电子受体,而卤键在卤键中充当电子受体。