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DFT-based chemical reactivity indices in the Hartree-Fock method. II. Fukui function, chemical potential, and hardness

机译:Hartree-Fock方法中基于DFT的化学反应性指数。二。福井功能,化学势和硬度

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A derivation of the density-functional-theory- (DFT) based reactivity indices in the ensemble unrestricted Hartree-Fock (eUHF) method is presented. The comparison between the properties of the reactivity indices evaluated in one and two sets of spin-orbital approach of the eUHF and hyper-unrestricted Hartree-Fock (UHF) methods are shown. All approaches give similar Fukui function irrespective of methodology used, but significantly differ for the global indices, containing important chemical information, and so their interpretation in terms of DFT- based indices can be questionable. The calculation scheme for the indices using the first- and second-order coupled perturbed eHF equations is proposed. A method for the identification of the spinorbitals involved in the change of the total number of electrons is included. The illustrative examples (water and hydrogen cyanide) show that the ground-state (GS) properties of the (Z +/- 1)-electron systems can be predicted from the GS properties of the Z-electron systems with an accuracy comparable with the UHF calculations. The relaxation effect, important for the HCN system in which a change in the symmetry of the highest-occupied spin-orbital occurs, is effectively predicted. (c) 2005 American Institute of Physics.
机译:提出了整体无限制Hartree-Fock(eUHF)方法中基于密度泛函理论(DFT)的反应指数的推导。显示了在eUHF和超无限制Hartree-Fock(UHF)方法的一套和两组自旋轨道方法中评估的反应性指数的性质之间的比较。不管使用哪种方法,所有方法都具有相似的Fukui函数,但是对于包含重要化学信息的全局指标而言,其显着不同,因此它们对基于DFT的指标的解释可能会令人怀疑。提出了利用一阶和二阶耦合摄动eHF方程计算指标的方案。包括一种鉴定与电子总数变化有关的自旋轨道的方法。说明性示例(水和氰化氢)表明,可以根据Z电子系统的GS特性预测(Z +/- 1)电子系统的基态(GS)特性,其准确度可与UHF计算。有效地预测了弛豫效应,该弛豫效应对于其中占据最大自旋轨道的对称性发生变化的HCN系统很重要。 (c)2005年美国物理研究所。

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