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Assessing the accuracy of some popular DFT methods for computing harmonic vibrational frequencies of water clusters

机译:评估一些流行的DFT方法计算水团谐波振动频率的准确性

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摘要

A wide range of density functional theory (DFT) methods (37 altogether), including pure, hybrid, range-separated hybrid, double-hybrid, and dispersion-corrected functionals, have been employed to compute the harmonic vibrational frequencies of eight small water clusters ranging in size from the dimer to four different isomers of the hexamer. These computed harmonic frequencies have been carefully compared to recently published benchmark values that are expected to be very close to the CCSD(T) complete basis set limit. Of the DFT methods examined here, omega B97 and omega B97X are the most consistently accurate, deviating from the reference values by less than 20 cm(-1) on average and never more than 60 cm(-1). The performance of double-hybrid methods including B2PLYP and mPW2-PLYP is only slightly better than more economical approaches, such as the M06-L pure functional and the M06-2X hybrid functional. Additionally, dispersion corrections offer very little improvement in computed frequencies. (C) 2015 Author(s).
机译:广泛使用了密度泛函理论(DFT)方法(共37种),包括纯函数,混合函数,范围分隔混合函数,双混合函数和色散校正函数,用于计算八个小水团簇的谐波振动频率大小范围从二聚体到六聚体的四个不同异构体。已将这些计算出的谐波频率与最近发布的基准值进行了仔细比较,该基准值预计将非常接近CCSD(T)的完整基准集限制。在这里检查的DFT方法中,omega B97和omega B97X最为准确,与参考值的平均偏差小于20 cm(-1),而从不大于60 cm(-1)。包括B2PLYP和mPW2-PLYP在内的双杂交方法的性能仅比更经济的方法(例如M06-L纯功能和M06-2X混合功能)的性能稍好。此外,色散校正在计算频率上几乎没有改善。 (C)2015年作者。

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