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比较非共价相互作用的各种分子静电势评估方法。

Comparison of Various Means of Evaluating Molecular Electrostatic Potentials for Noncovalent Interactions.

机构信息

Department of Chemistry and Biochemistry, Utah State University, Logan, Utah, 84322-0300.

出版信息

J Comput Chem. 2018 Apr 5;39(9):500-510. doi: 10.1002/jcc.25085. Epub 2017 Oct 30.

DOI:10.1002/jcc.25085
PMID:29083034
Abstract

The various heterodimers formed by a series of Lewis acids with NH as Lewis base are identified. Lewis acids include those that can form chalcogen (HSF and HSBr), pnicogen (H PF and H PBr), and tetrel (H SiF and H SiBr) bonds, as well as H-bonds and halogen bonds. The molecular electrostatic potential (MEP) of each Lewis acid is considered in a number of ways. Pictorial versions show broad regions of positive and negative MEP, on surfaces that vary with respect to either the value of the chosen isopotential, or their distance from the nuclei. Specific points are identified where the MEP reaches a maximum on a particular isodensity surface (V ). The locations and values of V were evaluated on different isodensity surfaces, and compared to the stabilities of the various equilibrium geometries. As the chosen isodensity is decreased, and the MEP maxima drift away from the molecule, some points maintain their angular positions with respect to the molecule, whereas others undergo a reorientation. The lowering isodensity also causes some of the maxima to disappear. In general, there is a fairly good correlation between the energetic ordering of the equilibrium structures and the values of V . A number of possible Lewis acid sites on the heteroaromatic imidazole ring were also considered and presents some cautions about application of V as the principal criterion for predicting equilibrium geometries. © 2017 Wiley Periodicals, Inc.

摘要

鉴定了一系列路易斯酸与 NH 作为路易斯碱形成的各种杂二聚体。路易斯酸包括那些可以形成硫属(HSF 和 HSBr)、磷属(H PF 和 H PBr)和硅属(H SiF 和 H SiBr)键以及氢键和卤素键的物质。考虑了每种路易斯酸的分子静电势(MEP)的多种方式。图示版本显示了 MEP 的正、负区域的广泛分布,其表面相对于所选等电位值或距原子核的距离而变化。确定了 MEP 在特定等密度表面(V)上达到最大值的特定点。在不同的等密度表面上评估了 V 的位置和值,并将其与各种平衡几何形状的稳定性进行了比较。随着所选等密度的降低,MEP 最大值会从分子漂移开,有些点保持相对于分子的角位置,而其他点则会重新定向。降低等密度还会导致一些最大值消失。通常,平衡结构的能量排序与 V 的值之间存在相当好的相关性。还考虑了杂芳族咪唑环上的一些可能的路易斯酸位点,并提出了一些关于将 V 作为预测平衡几何形状的主要标准的应用的注意事项。© 2017 年 Wiley 期刊出版公司

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