Wang Yang, Díaz-Tendero Sergio, Alcamí Manuel, Martín Fernando
Departamento de Química, Módulo 13 , Universidad Autónoma de Madrid , 28049 Madrid , Spain.
Institute for Advanced Research in Chemical Sciences (IAdChem) , Universidad Autónoma de Madrid , 28049 Madrid , Spain.
J Chem Theory Comput. 2018 Mar 13;14(3):1791-1810. doi: 10.1021/acs.jctc.7b01048. Epub 2018 Feb 14.
Understanding the relationship between structure and stability is one of the fundamental aspects of fullerene chemistry, as the number of possible cage isomers is very large and complexity increases by orders of magnitude when chemical groups are attached to the fullerene cage. The well-established stability rules valid for neutral fullerenes do not apply to many charged or functionalized fullerenes. Here we present the theory, implementation, and applications of two simple topology-based models that allow one to predict the relative stability of charged and functionalized fullerenes without the need for quantum chemistry calculations: (i) the charge stabilization index (CSI) model, based on the concepts of cage connectivity and frontier π orbitals, which offers a general framework for the relative stability of both positively and negatively charged fullerenes, as well as endohedral metallofullerenes, and (ii) the exohedral fullerene stabilization index (XSI) model, which incorporates all key factors governing the stability of exohedral fullerenes, namely, π delocalization, σ strain, and steric hindrance between addends. Based exclusively on topological information, both models are powerful prescreening tools for predicting the most stable structures of a large number of charged and functionalized fullerenes. For easy use by fullerene chemists, both models have been implemented in the FullFun (for Fullerene Functionalization) software package, whose effectiveness and efficiency are demonstrated by some illustrative examples.
理解结构与稳定性之间的关系是富勒烯化学的基本方面之一,因为可能的笼状异构体数量非常多,并且当化学基团连接到富勒烯笼上时,复杂性会呈数量级增加。适用于中性富勒烯的既定稳定性规则并不适用于许多带电或功能化的富勒烯。在此,我们介绍两种基于简单拓扑的模型的理论、实现方法及应用,这两种模型能够让人在无需量子化学计算的情况下预测带电和功能化富勒烯的相对稳定性:(i)电荷稳定指数(CSI)模型,基于笼状连接性和前沿π轨道的概念,它为带正电和带负电的富勒烯以及内嵌金属富勒烯的相对稳定性提供了一个通用框架;(ii)外表面富勒烯稳定指数(XSI)模型,该模型纳入了控制外表面富勒烯稳定性的所有关键因素,即π离域、σ应变以及加成物之间的空间位阻。仅基于拓扑信息,这两种模型都是预测大量带电和功能化富勒烯最稳定结构的强大预筛选工具。为方便富勒烯化学家使用,这两种模型都已在FullFun(用于富勒烯功能化)软件包中实现,一些示例展示了该软件包的有效性和效率。