Robles Andrés, Franco-Pérez Marco, Gázquez José L, Cárdenas Carlos, Fuentealba Patricio
Departamento de Física, Facultad de Ciencias, Universidad de Chile, Casilla 653, Santiago, Chile.
Facultad de Química, Universidad Nacional Autónoma de México, Cd. Universitaria, 04510, Ciudad de México, Mexico.
J Mol Model. 2018 Aug 20;24(9):245. doi: 10.1007/s00894-018-3785-6.
In this work some possibilities for deriving a local electrophilicity are studied. First, we consider the original definition proposed by Chattaraj, Maiti, and Sarkar (J Phys Chem A 107:4973, 2003), in which the local electrophilicity is given by the product of the global electrophilicity, and the Fukui function for charge acceptance is derived by two different approaches, making use of the chain rule for functional derivatives. We also modify the proposals based on the electron density so as to have a definition with the same units of the original definition, which also introduces a dependence in the Fukui function for charge donation. Additionally, we also explore other possibilities using the tools of information theory and the temperature dependent reactivity indices of the density functional theory of chemical reactivity. The poor results obtained from the last two approaches lead us to conjecture that this is due to the fact that the global electrophilicity is not a derivative, like most of the other reactivity indices. The conclusion is that Chattaraj's suggestion seems to be the simplest, but at the same time a very reliable approach to this important property.
在这项工作中,研究了推导局部亲电性的一些可能性。首先,我们考虑Chattaraj、Maiti和Sarkar提出的原始定义(《物理化学杂志A》107:4973,2003),其中局部亲电性由全局亲电性的乘积给出,并且通过两种不同的方法利用泛函导数的链式法则推导出电荷接受的福井函数。我们还基于电子密度修改了这些提议,以便得到一个与原始定义具有相同单位的定义,这也引入了电荷给予的福井函数中的一种依赖性。此外,我们还使用信息论工具和化学反应性密度泛函理论的温度相关反应性指数探索了其他可能性。从最后两种方法获得的糟糕结果使我们推测,这是由于全局亲电性不像大多数其他反应性指数那样是一个导数。结论是Chattaraj的建议似乎是最简单的,但同时也是对这一重要性质非常可靠的方法。