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在包含第一、第二和非过渡第三周期原子的分子的 G3 理论中实现赝势。

Implementation of pseudopotential in the G3 theory for molecules containing first-, second-, and non-transition third-row atoms.

机构信息

Instituto de Química, Universidade Estadual de Campinas, Barão Geraldo-CP 6154, Campinas, 13083-970 São Paulo, Brazil

出版信息

J Chem Phys. 2011 Jul 21;135(3):034106. doi: 10.1063/1.3609241.

Abstract

Compact effective pseudopotential (CEP) is adapted in the G3 theory providing a theoretical alternative referred to as G3CEP for calculations involving the first-, second-, and non-transition third-row elements. These modifications tried to preserve as much as possible the original characteristics of G3. G3CEP was used in the study of 247 enthalpies of formation, 22 atomization energies, 104 ionization potentials, 63 electron affinities, and 10 proton affinities, resulting in the calculation of 446 species for the first-, second-, and third-row atoms. The final average total absolute deviation was of 1.29 kcal mol(-1) against 1.16 kcal mol(-1) from all-electron G3 for the same calculations. The CPU time has been reduced by 7% to 56%, depending on the size of the molecules and the type of atoms considered.

摘要

紧凑型有效赝势(CEP)在 G3 理论中得到了应用,为涉及第一、第二和非过渡第三周期元素的计算提供了一种理论上的替代方法,称为 G3CEP。这些修改试图尽可能多地保留 G3 的原始特征。G3CEP 用于研究 247 个生成焓、22 个原子化能、104 个电离能、63 个电子亲和能和 10 个质子亲和能,从而计算了第一、第二和第三周期原子的 446 种物质。最终的平均总绝对偏差为 1.29 kcal mol(-1),而对于相同的计算,全电子 G3 为 1.16 kcal mol(-1)。根据分子的大小和考虑的原子类型,CPU 时间减少了 7%至 56%。

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