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首页> 外文期刊>The Journal of Chemical Physics >6-31G* basis set for atoms K through Zn
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6-31G* basis set for atoms K through Zn

机译:原子K至Zn的6-31G *基础

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Medium basis sets based upon contractions of Gaussian primitives are developed for the third-row elements K through Zn. The basis functions generalize the 6-31G and 6-31G* sets commonly used for atoms up to Ar. They use six primitive Gaussians for Is, 2s, 2p, 3s, and 3p orbitals, and a split-valence pair of three and one primitives for valence orbitals, which are 4s and 5p for atoms K and Ca, and 4s, 4p, and 3d for atoms Sc through Zn. A 6-31G* set is formed by adding a single set of Gaussian polarization functions to the 6-31G set. They are Cartesian d-functions for atoms K and Ca, and Cartesian f-functions for atoms Sc through Zn. Comparison with experimental data shows relatively good agreement with bond lengths and angles for representative vapor-phase metal complexes. (C) 1998 American Institute of Physics. [References: 24]
机译:针对第三行元素K到Zn,开发了基于高斯基元收缩的中等基础集。基本函数概括了常用于Ar至以下原子的6-31G和6-31G *集。他们对Is,2s,2p,3s和3p轨道使用六个原始高斯分布,对价轨道使用三和一个本原的分裂价对,原子K和Ca分别为4s和5p,以及4s,4p和原子Sc到Zn的3d。通过将一组高斯偏振函数添加到6-31G集,可以形成6-31G *集。它们是原子K和Ca的笛卡尔d函数,以及原子Sc到Zn的笛卡尔f函数。与实验数据的比较表明,代表性的气相金属配合物在键长和键角方面具有较好的一致性。 (C)1998美国物理研究所。 [参考:24]

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