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首页> 外文期刊>Quimica nova >GRAPHICAL ANALYSIS OF THE COMPUTATIONAL METHODS PERFORMANCE IN THE STUDY OF THERMOCHEMICAL PROPERTIES
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GRAPHICAL ANALYSIS OF THE COMPUTATIONAL METHODS PERFORMANCE IN THE STUDY OF THERMOCHEMICAL PROPERTIES

机译:热化学性质研究中的计算方法表现的图解分析

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摘要

In this manuscript we have evaluated the computational methods performance in the calculation of thermochemical properties using graphical analysis. The analysis was carried out in a set of 74 organic molecules considering the following thermochemical properties: standard enthalpy of formation, ionization energy and electron and proton affinities. The evaluated methodologies were: G3, G3MP2, G3B3, G3MP2B3, G4 and G4MP2, and the exchange-correlation func- tionals: SOGGA11, RevTPSS, B3LYP, PBE0, B98, M06-2X, BMK and HSE06. Larger basis function sets (G3LargeXP) were employed with these functionals. It was observed that Gaussian-4 theory using reduced order perturbation theory (G4MP2) offered the best relationships between accuracy and computational cost.
机译:在本手稿中,我们在使用图形分析的计算方法中评估了计算方法性能。考虑到以下热化学性质的一组74种有机分子中进行分析:形成的形成,电离能和电子和质子亲和力标准焓。评估的方法是:G3,G3MP2,G3B3,G3MP2B3,G4和G4MP2,以及交换相关功能:Sogga11,RevTPS,B3Lyp,PBE0,B98,M06-2X,BMK和HSE06。较大的基础函数集(G3largexp)与这些功能一起使用。观察到,高斯-4利用减少顺序扰动理论(G4MP2)的理论提供了准确性和计算成本之间的最佳关系。

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