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The Electronegativity Equalization Method I: Parametrization and Validation for Atomic Charge Calculations

机译:电负性均衡方法I:原子电荷计算的参数化和验证

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摘要

The applicability of the electronegativity equalization method (EEM) is investigated for the fast calculation of atomic charges inorganic chemistry, with an emphasis on medicinal chemistry. A large training set of molecules was composed, comprising H, C, N, O, and F, covering a wide range of medical chemistry. Geometries and atomic charge are calculated at the B3LYP/6-31G~* level, and from the calculated charges, effective electronegativity and hardness values are calibrated in a weighted least-squares fashion. The optimized parameter set is compared to other theoretical as well as experimental values and origins of the differences discussed. An approach toward extension of EEM to include new atoms is introduced. The quality of the EEM charges is assessed by comparison with B3LYP/6-31G~* charges calculated for a set of medicinal molecules, not contained in the training set. The EEM approach is found to be a very powerful way to obtain ab initio quality charges without the computational cost of the ab initio approach.
机译:研究了电负性均化方法(EEM)在快速计算原子电荷无机化学中的适用性,重点是药物化学。组成了一个大分子训练集,包括H,C,N,O和F,涵盖了广泛的医学化学。在B3LYP / 6-31G〜*水平上计算几何形状和原子电荷,并从计算出的电荷中,以加权最小二乘法校准有效电负性和硬度值。将优化的参数集与其他理论值以及实验值和讨论的差异来源进行比较。介绍了一种扩展EEM以包括新原子的方法。通过将EEM电荷的质量与针对一组未包含在训练集中的一组医学分子计算的B3LYP / 6-31G〜*电荷进行比较,来评估EEM电荷的质量。发现EEM方法是获得从头算起的质量费用的一种非常有效的方法,而无需从头算起的计算成本。

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