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Core-shell potential-derived point charges

机译:核壳电位衍生的点电荷

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The present work details the development of a core-shell model for the purposes of obtaining potential-derived point charges from the ab initio molecular electrostatic potential. In contrast to atomic point charge models, the core-shell model decomposes all atoms into a core with static charge located at a fixed atomic position and a shell with variable charge and position. The optimization of shell charges and positions is discussed. The core-shell model was found to significantly improve description of the ab initio electrostatic potential when compared to potential-derived net atomic point charge models as well as distributed multipoles with contributions up to atomic quadrupole moments. The core-shell model was found to produce similar results as the Weller-Williams lone-pair model and differences in the implementation of the models are discussed.
机译:本工作详细介绍了核-壳模型的开发过程,目的是从头算分子静电势中获得电位衍生的点电荷。与原子点电荷模型相反,核-壳模型将所有原子分解为具有位于固定原子位置的静电荷的核和具有可变电荷和位置的壳。讨论了炮弹装药和位置的优化。与源自势能的净原子点电荷模型以及具有高达原子四极矩贡献的分布多极子相比,发现核-壳模型可显着改善从头算静电势的描述。发现核-壳模型产生与Weller-Williams孤对模型相似的结果,并讨论了模型实现的差异。

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