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A comparative analysis by means of quantum molecular similarity measures of density distributions derived from conventional ab initio and density functional methods

机译:通过量子分子相似性度量比较从传统的从头算和密度泛函方法得出的密度分布的比较分析

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摘要

A procedure based on quantum molecular similarity measures (QMSM) has been used to compare electron densities obtained from conventional ab initio and density functional methodologies at their respective optimized geometries. This method has been applied to a series of small molecules which have experimentally known properties and molecular bonds of diverse degrees of ionicity and covalency. Results show that in most cases the electron densities obtained from density functional methodologies are of a similar quality than post-Hartree-Fock generalized densities. For molecules where Hartree-Fock methodology yields erroneous results, the density functional methodology is shown to yield usually more accurate densities than those provided by the second order Møller-Plesset perturbation theory
机译:已经使用了基于量子分子相似性度量(QMSM)的程序来比较从常规的从头算和密度泛函方法在它们各自的最佳几何形状获得的电子密度。该方法已应用于一系列小分子,这些小分子具有实验已知的特性以及不同程度的离子性和共价性的分子键。结果表明,在大多数情况下,从密度泛函方法获得的电子密度与后Hartree-Fock广义密度具有相似的质量。对于Hartree-Fock方法产生错误结果的分子,密度泛函方法通常显示出比二阶Møller-Plesset微扰理论提供的密度更准确的密度。

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