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基于赝势的复合方法:含 4d 过渡金属(Y-Cd)的分子的相对论赝势相关一致复合方法。

A pseudopotential-based composite method: the relativistic pseudopotential correlation consistent composite approach for molecules containing 4d transition metals (Y-Cd).

机构信息

Center for Advanced Scientific Computing and Modeling (CASCaM), Department of Chemistry, University of North Texas, Denton, Texas 76203-5070, USA.

出版信息

J Chem Phys. 2011 Dec 7;135(21):214103. doi: 10.1063/1.3662415.

Abstract

The correlation consistent composite approach (ccCA) has proven to be an effective first-principles-based composite approach for main group and first-row transition metal species. By combining relativistic pseudopotentials and ccCA, accurate energetic and thermodynamic data for heavier elements, including transition metals, is obtainable. Relativistic pseudopotential ccCA (rp-ccCA) was formulated and tested on 25 molecules from the G3∕05 set that contain 4p elements (Ga-Kr). A 32.5% time savings was obtained using rp-ccCA, relative to ccCA employing all-electron basis sets. When implementing rp-ccCA to compute dissociation energies and enthalpies of formation for molecules from the 4p block, rp-ccCA results in a mean absolute deviation of 0.89 kcal mol(-1) from experimental data. rp-ccCA was also applied to a set of 30 4d transition metal-containing molecules, ranging from diatomics to Mo(CO)(6), and enthalpies of formation for these species were obtained with a mean absolute deviation of 2.89 kcal mol(-1) in comparison to experimental data. Based on quality of the experimentally available enthalpies of formation, where the average value of reported experimental error bars is 3.43 kcal mol(-1), rp-ccCA is within transition metal chemical accuracy for the 4d molecule set. rp-ccCA is a pseudopotential-based composite method for transition metals and is shown to yield accurate thermodynamic results for molecules containing heavy elements Ga-Kr and Y-Cd.

摘要

相关一致复合方法(ccCA)已被证明是一种有效的基于第一性原理的主族和第一过渡金属物种的复合方法。通过结合相对论赝势和 ccCA,可以获得包括过渡金属在内的较重元素的精确能量和热力学数据。相对论赝势 ccCA(rp-ccCA)已在包含 4p 元素(Ga-Kr)的 G3∕05 集的 25 个分子上进行了公式化和测试。与使用全电子基组的 ccCA 相比,rp-ccCA 可节省 32.5%的时间。当将 rp-ccCA 用于计算来自 4p 块的分子的离解能和生成焓时,rp-ccCA 的实验数据的平均绝对偏差为 0.89 kcal/mol。rp-ccCA 还应用于一组 30 个包含 4d 过渡金属的分子,范围从双原子分子到 Mo(CO)(6),并获得了这些物质的生成焓,与实验数据相比平均绝对偏差为 2.89 kcal/mol。基于实验可得生成焓的质量,其中报告的实验误差的平均值为 3.43 kcal/mol,rp-ccCA 对于 4d 分子集具有过渡金属化学精度。rp-ccCA 是一种用于过渡金属的赝势基复合方法,它被证明可以为包含 Ga-Kr 和 Y-Cd 重元素的分子提供准确的热力学结果。

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