首页> 外文期刊>International Journal of Quantum Chemistry >BASIS SETS FOR AB INITIO PERIODIC HARTREE-FOCK STUDIES OF ZEOLITE/ADSORBATE INTERACTIONS - HE, NE, AND AR IN SILICA SODALITE
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BASIS SETS FOR AB INITIO PERIODIC HARTREE-FOCK STUDIES OF ZEOLITE/ADSORBATE INTERACTIONS - HE, NE, AND AR IN SILICA SODALITE

机译:硅酸钠中沸石/吸附剂相互作用(HE,NE和AR)的从头算周期HARTREE-FOCK研究的基础集

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摘要

Silica sodalite is an ideal model system to establish base-line computer requirements of ab initio periodic Hartree-Fock (FHF) calculations of zeolites. In this article, we investigate the effect of various basis sets on the structural and electronic properties of bulk silica sodalite. We also study the interaction of He, Ne, and Ar with the sodalite cage. Our work shows that basis-set superposition errors (BSSE) in calculations using STO-3G and 6-21G(*) basis sets are as large as the interaction energies, leading to poor confidence in the results. To cure this problem, we present high-quality basis sets for Si, O, He, Ne, and Ar, optimized for use with PHF methods, and demonstrate that the new basis set greatly reduces BSSE. The theoretical barriers for transfer of the rare gases between sodalite cages are 5.6, 13.2, and 62.1 kcal/mol for He, Ne, and Ar. (C) 1996 John Wiley & Sons, Inc. [References: 27]
机译:硅质方钠石是一种理想的模型系统,可建立从头计算周期性沸石的Hartree-Fock(FHF)计算的基线计算机要求。在本文中,我们研究了各种基础体系对散装二氧化硅方钠石结构和电子性能的影响。我们还研究了He,Ne和Ar与方钠石笼的相互作用。我们的工作表明,使用STO-3G和6-21G(*)基集进行计算时,基集叠加误差(BSSE)与相互作用能一样大,从而导致结果的可信度较差。为了解决这个问题,我们为Si,O,He,Ne和Ar提供了高质量的基集,并针对PHF方法进行了优化,并证明了新的基集大大降低了BSSE。对于He,Ne和Ar,稀有气体在方钠石笼之间转移的理论壁垒为5.6、13.2和62.1 kcal / mol。 (C)1996 John Wiley&Sons,Inc. [参考:27]

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