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Basis set limit electronic excitation energies, ionization potentials, and electron affinities for the 3d transition metal atoms: Coupled cluster and multireference methods

机译:为3d过渡金属原子设定基本极限电子激发能,电离势和电子亲和力:耦合簇和多参考方法

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摘要

Recently developed correlation consistent basis sets for the first row transition metal elements Sc-Zn have been utilized to determine complete basis set (CBS) scalar relativistic electron affinities, ionization potentials, and 4s(2)3d(n-2)-4s(1)d(n-1) electronic excitation energies with single reference coupled cluster methods [CCSD(T), CCSDT, and CCSDTQ] and multireference configuration interaction with three reference spaces: 3d4s, 3d4s4p, and 3d4s4p3d('). The theoretical values calculated with the highest order coupled cluster techniques at the CBS limit, including extrapolations to full configuration interaction, are well within 1 kcal/mol of the corresponding experimental data. For the early transition metal elements (Sc-Mn) the internally contracted multireference averaged coupled pair functional method yielded excellent agreement with experiment; however, the atomic properties for the late transition metals (Mn-Zn) proved to be much more difficult to describe with this level of theory, even with the largest reference function of the present work. (c) 2006 American Institute of Physics.
机译:最近开发的用于第一行过渡金属元素Sc-Zn的相关一致基集已用于确定完整基集(CBS)标量相对论电子亲和力,电离势和4s(2)3d(n-2)-4s(1 d(n-1)个电子激发能,采用单参考耦合簇方法[CCSD(T),CCSDT和CCSDTQ],并且多参考配置与三个参考空间相互作用:3d4s,3d4s4p和3d4s4p3d(')。使用CBS极限处的最高阶耦合簇技术计算的理论值(包括外推到完整构型的相互作用)都在相应实验数据的1 kcal / mol之内。对于早期过渡金属元素(Sc-Mn),内部收缩的多参比平均耦合对官能团方法与实验结果吻合良好。然而,即使在目前的研究中具有最大的参考功能,用这种理论水平的方法也难以描述晚过渡金属(Mn-Zn)的原子特性。 (c)2006年美国物理研究所。

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