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利用相对论有效核势精确计算过渡金属化合物的分子极化率。

Utilizing relativistic effective core potentials for accurate calculations of molecular polarizabilities on transition metal compounds.

作者信息

Labello Nicholas P, Ferreira Antonio M, Kurtz Henry A

机构信息

Computational Research on Materials Institute, Department of Chemistry, The University of Memphis, Memphis, Tennessee 38152, USA.

出版信息

J Phys Chem A. 2006 Dec 21;110(50):13507-13. doi: 10.1021/jp0611121.

Abstract

The requirements necessary to extend an ECP basis set for the calculation of electric and linear optical properties to the transition metals are studied. Previously an augmentation of the SBK basis set for 39 elements with s and p electron only valences (H-Rn, excluding Ga, In, and Tl) [J. Comput. Chem., 2005, 26, 1464-1471] was presented. In this work, electric dipole moments, polarizabilities, and anisotropies of selected metal hydrides, sulfides, and bromides, cisplatin, and the Fe, Ru, and Os metallocene derivatives along with many other systems are calculated and discussed. ECP calculations of molecules containing 3d and 4d metal centers among main group atoms have good agreement, often within 1-2% of the all-electron result at the time-dependent Hartree-Fock (TDHF)/Sadlej level of theory. Molecules with a 5d metal center have a large difference from and are more accurate than the all-electron results due to the inclusion of relativistic effects in the ECPs. The polarizability as calculated with and without ECPs of metallic clusters and surfaces is increasingly different as atomic number increases, again due to a lack of relativistic effects in the all-electron calculations. The augmented ECP calculations are consistent with relativistic all-electron results, while the Sadlej calculations are consistent with other nonrelativistic results. Both relativistic and basis set effects are less noticeable when the metal is in a formally positive state.

摘要

研究了将用于计算电和线性光学性质的有效核势(ECP)基组扩展到过渡金属所需的条件。此前已提出对仅具有s和p电子价态的39种元素(H - Rn,不包括Ga、In和Tl)的SBK基组进行增强 [《计算化学杂志》,2005年,26卷,1464 - 1471页]。在这项工作中,计算并讨论了选定的金属氢化物、硫化物、溴化物、顺铂以及铁、钌和锇茂金属衍生物等许多其他体系的电偶极矩、极化率和各向异性。在含时Hartree - Fock(TDHF)/Sadlej理论水平下,主族原子中含有3d和4d金属中心的分子的ECP计算结果与全电子计算结果吻合良好,通常在1 - 2%以内。含有5d金属中心的分子与全电子计算结果有较大差异,且由于ECP中包含相对论效应,其结果更准确。金属团簇和表面在有无ECP情况下计算得到的极化率随原子序数增加差异越来越大,这同样是由于全电子计算中缺乏相对论效应。增强的ECP计算结果与相对论全电子计算结果一致,而Sadlej计算结果与其他非相对论计算结果一致。当金属处于形式上的正态时,相对论效应和基组效应都不太明显。

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