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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Quasi-Atomic Bond Analyses in the Sixth Period: I. Relativistic Accurate Atomic Minimal Basis Sets for the Elements Cesium to Radon
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Quasi-Atomic Bond Analyses in the Sixth Period: I. Relativistic Accurate Atomic Minimal Basis Sets for the Elements Cesium to Radon

机译:第六期准原子键分析:I.元素对氡元素的相对论准确原子最小基础套装

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Full-valence relativistic accurate atomic minimal basis set (AAMBS) orbitals are developed for the sixth-row elements from cesium to radon, including the lanthanides. Saturated primitive atomic basis sets are developed and subsequently used to form the AAMBS orbitals. By virtue of the use of a saturated basis, properties computed based on the AAMBS orbitals are basis set independent. In molecules, the AAMBS orbitals can be used to construct valence virtual orbitals (VVOs) that provide chemically meaningful ab initio lowest unoccupied molecular orbitals (LUMOs) with basis set independent orbital energies. The optimized occupied molecular orbitals complemented with the VVOs form a set of full-valence molecular orbitals. They can be transformed into a set of oriented quasi-atomic orbitals (QUAOs) that provide information on intramolecular bonding via an intrinsic density analysis. In the present work, the development of the AAMBS for the sixth row is presented.
机译:全价相对论精确原子最小基础组(AAMBS)轨道被开发用于从铯到氡的六排元素,包括镧系元素。 开发饱和原子原子基集并随后用于形成AAMBS轨道。 借助于使用饱和基础,基于AAMBS轨道计算的属性是基于独立的基础集。 在分子中,AAMBS轨道可用于构建价虚拟轨道(VVOS),其提供化学有限的AB ININIO最低未占用的分子轨道(LUMOS),基础设定独立的轨道能量。 优化的占用分子轨道与VVOS相辅相成,形成一组全价分子轨道。 它们可以转化为一组取向的准原子轨道(突变),其通过内在密度分析提供关于分子内键合的信息。 在本作的工作中,提出了第六行的AAMB的发展。

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