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原子及其离子的超硬度和超软度。

Hyperhardness and hypersoftness of atoms and their ions.

作者信息

Zaklika Jarosław, Ordon Piotr, Komorowski Ludwik

机构信息

Department of Physical and Quantum Chemistry, Wrocław University of Science and Technology, Wyb. Wyspiańskiego 27, 50-370, Wrocław, Poland.

Department of Physics and Biophysics, Wrocław University of Environmental and Life Sciences, Ul. Norwida 25, 50-373, Wrocław, Poland.

出版信息

J Mol Model. 2024 Sep 21;30(10):344. doi: 10.1007/s00894-024-06136-3.

Abstract

CONTEXT

The theory of reactivity based on cDFT has been supplemented with the new method of calculating the atomic and local indices. With the use of previously derived relationship of the electron density gradient to the softness kernel and to the linear response function, we deliver theoretical analysis to obtain significant reactivity indices-the electron density derivatives: local softness and local hypersoftness together with the global hyperhardness index and the derivative of the global softness with respect to the number of electrons. The local derivatives have been applied in the calculation of responses of atoms to perturbation by an external potential by the alchemical approach. The vital role of the local softness has been confirmed; the potential role of the hypersoftness has been indicated.

METHOD

Our original theoretical scheme has been numerically illustrated with the results obtained with electron density calculations with B3LYP method implemented in Gaussian 16 package. The aug-cc-pvqz basis set has been routinely applied, except for the Ca atom (cc-pvqz). Using the pVTZ basis set recommended by Sadlej was necessary for the potassium atom.

摘要

背景

基于约束密度泛函理论(cDFT)的反应性理论已通过计算原子和局部指数的新方法得到补充。利用先前推导出的电子密度梯度与软度核以及线性响应函数之间的关系,我们进行了理论分析,以获得重要的反应性指数——电子密度导数:局部软度和局部超软度,以及全局超硬度指数和全局软度相对于电子数的导数。局部导数已应用于通过炼金术方法计算原子对外界势扰动的响应。局部软度的重要作用已得到证实;超软度的潜在作用也已被指出。

方法

我们最初的理论方案已通过在高斯16软件包中使用B3LYP方法进行电子密度计算所获得的结果进行了数值说明。除钙原子(cc-pvqz)外,常规应用aug-cc-pvqz基组。对于钾原子,使用萨德莱推荐的pVTZ基组是必要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d93a/11416423/566f6887cc41/894_2024_6136_Fig1_HTML.jpg

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