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Accurate density-functional calculation of core-electron binding energies by a total-energy difference approach

机译:用总能差法精确计算核-电子键合能的密度函数

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摘要

A procedure for calculating core-electron binding energies (CEBEs), based on a total-energy difference approach within Kohn-Sham density functional theory, was investigated. Ten functional combinations and several basis sets (including unscaled, scaled, and core-valence correlated functions) were studied using a database of reliable observed CEBEs. The functionals designed by Perdew and Wang (1986 exchange and 1991 correlation) were found to give the best performance with an average absolute deviation from experiment of 0.15 eV. The scaled basis sets did not perform satisfactorily, but it was found that the core-valence correlated cc-pCVTZ basis functions were an excellent alternative to the cc-pV5Z set as they provided equally accurate results and could be applied to larger molecules.
机译:研究了基于Kohn-Sham密度泛函理论内的总能量差方法计算核电子结合能(CEBE)的程序。使用可靠观察到的CEBE数据库研究了十个功能组合和几个基础集(包括未缩放,缩放和核心价相关的函数)。发现Perdew和Wang设计的功能(1986年交换和1991年相关)在提供最佳性能的同时,与实验的平均绝对偏差为0.15 eV。缩放的基集不能令人满意地执行,但是发现与核心价相关的cc-pCVTZ基函数是cc-pV5Z集合的极好替代,因为它们提供了同样准确的结果,并且可以应用于较大的分子。

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