Lefebvre Corentin, Rubez Gaëtan, Khartabil Hassan, Boisson Jean-Charles, Contreras-García Julia, Hénon Eric
Institut de Chimie Moléculaire de Reims, CNRS UMR 7312, University of Reims Champagne-Ardenne, BP 1039, 51687 Reims, France.
CReSTIC EA 3804, University of Reims Champagne-Ardenne, 51687 Reims, France.
Phys Chem Chem Phys. 2017 Jul 21;19(27):17928-17936. doi: 10.1039/c7cp02110k. Epub 2017 Jun 30.
An electron density (ED)-based methodology is developed for the automatic identification of intermolecular interactions using pro-molecular density. The expression of the ED gradient in terms of atomic components furnishes the basis for the Independent Gradient Model (IGM). This model leads to a density reference for non interacting atoms/fragments where the atomic densities are added whilst their interaction turns off. Founded on this ED reference function that features an exponential decay also in interference regions, IGM model provides a way to identify and quantify the net ED gradient attenuation due to interactions. Using an intra/inter uncoupling scheme, a descriptor (δg) is then derived that uniquely defines intermolecular interaction regions. An attractive feature of the IGM methodology is to provide a workflow that automatically generates data composed solely of intermolecular interactions for drawing the corresponding 3D isosurface representations.
开发了一种基于电子密度(ED)的方法,用于使用前分子密度自动识别分子间相互作用。根据原子成分表示的ED梯度为独立梯度模型(IGM)提供了基础。该模型为非相互作用原子/片段提供了一个密度参考,其中原子密度相加,而它们的相互作用关闭。基于这种在干涉区域也具有指数衰减特征的ED参考函数,IGM模型提供了一种识别和量化由于相互作用导致的净ED梯度衰减的方法。使用内/外解耦方案,然后导出一个描述符(δg),它唯一地定义了分子间相互作用区域。IGM方法的一个吸引人的特点是提供了一个工作流程,该流程自动生成仅由分子间相互作用组成的数据,用于绘制相应的3D等值面表示。