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Economical Basis Sets and Their Uses in Ab Initio Calculations

机译:经济基础集及其在从头算中的用途

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In this article, we review a practical and effective scheme proposed by one of the authors for choosing basis sets in ab initio calculations and assess its efficiency in selected applications. In the scheme, we consider the different roles of the particular functions, including the polarization and diffuse functions, adopted in the basis set, as well as the nature and environment of the atom. The number and level of basis functions required to describe an atom should be determined according to its relative order in the periodic table and/or electronegativity. For an atom with a relatively higher electronegativity, larger basis functions including polarization and diffuse functions should be used, while the basis functions for a less electronegative atom or positively charged atom can be reduced and may not adopt any polarization and diffuse functions. For systems involving hydrogen bonding, weak interactions, functional groups, metallic bonding with zero or low-positive valence, and other sensitive interactions, both the polarization and diffuse functions may need to be used. These economical composite basis sets are applied to a variety of systems, from small to very large compounds. Compared with the calculations required for conventional basis set schemes at different levels, the economical composite basis set can accurately predict the structures and properties of compounds while saving significant CPU. A single-point calculation using the geometric structure determined using the economical composite basis set can further improve the accuracy of calculating certain properties. (c) 2014 Wiley Periodicals, Inc.
机译:在本文中,我们回顾了一位作者提出的一种实用有效的方案,该方案用于从头算中选择基础集,并评估其在选定应用中的效率。在该方案中,我们考虑了基本功能中采用的特定功能的不同角色,包括极化和扩散功能,以及原子的性质和环境。描述原子所需的基本功能的数量和水平应根据其在周期表中的相对顺序和/或电负性来确定。对于具有相对较高电负性的原子,应使用较大的基函数,包括极化和扩散函数,而对于较低电负性原子或带正电原子,则可以降低其基函数,并且可以不采用任何极化和扩散函数。对于涉及氢键,弱相互作用,官能团,零价或低正价金属键和其他敏感相互作用的系统,可能需要同时使用极化和扩散功能。这些经济的复合基础集适用于从小型到大型化合物的各种系统。与不同级别的常规基础集方案所需的计算相比,经济的复合基础集可以准确预测化合物的结构和性质,同时节省大量CPU。使用经济复合基集确定的几何结构的单点计算可以进一步提高计算某些属性的准确性。 (c)2014年威利期刊有限公司

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