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首页> 外文期刊>The Journal of Chemical Physics >New accurate reference energies for the G2/97 test set
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New accurate reference energies for the G2/97 test set

机译:G2 / 97测试仪的新精确参考能量

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摘要

A recently proposed computational protocol is employed to obtain highly accurate atomization energies for the full G2/97 test set, which consists of 148 diverse molecules. This computational protocol is based on the explicitly correlated coupled-cluster method with iterative single and double excitations as well as perturbative triple excitations, using quadruple-ζ basis sets. Corrections for higher excitations and core/core-valence correlation effects are accounted for in separate calculations. In this manner, suitable reference values are obtained with a mean deviation of -0.75 kJ/mol and a standard deviation of 1.06 kJ/mol with respect to the active thermochemical tables. Often, in the literature, new approximate methods (e.g., in the area of density functional theory) are compared to, or fitted to, experimental heats of formation of the G2/97 test set. We propose to use our atomization energies for this purpose because they are more accurate on average.
机译:使用最近提出的计算协议来获得完整的G2 / 97测试集的高精度雾化能量,该测试集由148个不同分子组成。该计算协议基于显式相关的耦合簇方法,具有迭代单次和双次激发以及扰动三次激发,并使用四倍ζ基集。在单独的计算中考虑了对更高激励和核心/核心价相关效应的校正。以这种方式,获得了相对于活性热化学表的平均偏差为-0.75 kJ / mol和标准偏差为1.06 kJ / mol的合适参考值。通常,在文献中,将新的近似方法(例如在密度泛函理论领域)与G2 / 97测试集形成的实验热进行比较或拟合。我们建议将雾化能量用于此目的,因为它们的平均精度更高。

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