The study of electronic transitions within a molecule connected to the absorption or emission of light is a common task in the process of the design of new materials. The transitions are complex quantum mechanical processes and a detailed analysis requires a breakdown of these processes into components that can be interpreted via characteristic chemical properties. We approach these tasks by providing a detailed analysis of the electron density field. This entails methods to quantify and visualize electron localization and transfer from molecular subgroups combining spatial and abstract representations. The core of our method uses geometric segmentation of the electronic density field coupled with a graph-theoretic formulation of charge transfer between molecular subgroups. The design of the methods has been guided by the goal of providing a generic and objective analysis following fundamental concepts. We illustrate the proposed approach using several case studies involving the study of electronic transitions in different molecular systems.
翻译:在设计新材料的过程中,对与吸收或排放光有关的分子内部电子转换的研究是一项共同任务。这种转变是复杂的量子机械过程,而详细分析则要求将这些过程细分为可以通过化学特性解释的部件。我们通过对电子密度域进行详细分析来对待这些任务。这需要用多种方法来量化和可视化电子定位和从混合空间和抽象表示的分子分组转移。我们方法的核心是使用电子密度域的几何分化,并配以分子分组之间电荷转移的图形学理论配方。这些方法的设计是以提供一种基本概念的通用和客观分析为指南的。我们用不同分子系统电子转换研究的若干案例研究来说明拟议的方法。