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在忽略双原子微分重叠近似下对从头算分子积分的大数据分析。

Big data analysis of ab Initio molecular integrals in the neglect of diatomic differential overlap approximation.

作者信息

Wu Xin, Dral Pavlo O, Koslowski Axel, Thiel Walter

机构信息

Max-Planck-Institut für Kohlenforschung, 45470, Mülheim an der Ruhr, Germany.

出版信息

J Comput Chem. 2019 Feb 5;40(4):638-649. doi: 10.1002/jcc.25748. Epub 2018 Dec 14.

Abstract

Most modern semiempirical quantum-chemical (SQC) methods are based on the neglect of diatomic differential overlap (NDDO) approximation to ab initio molecular integrals. Here, we check the validity of this approximation by computing all relevant integrals for 32 typical organic molecules using Gaussian-type orbitals and various basis sets (from valence-only minimal to all-electron triple-ζ basis sets) covering in total more than 15.6 million one-electron (1-e) and 10.3 billion two-electron (2-e) integrals. The integrals are calculated in the nonorthogonal atomic basis and then transformed by symmetric orthogonalization to the Löwdin basis. In the case of the 1-e integrals, we find strong orthogonalization effects that need to be included in SQC models, for example, by strategies such as those adopted in the available OMx methods. For the valence-only minimal basis, we confirm that the 2-e Coulomb integrals in the Löwdin basis are quantitatively close to their counterparts in the atomic basis and that the 2-e exchange integrals can be safely neglected in line with the NDDO approximation. For larger all-electron basis sets, there are strong multishell orthogonalization effects that lead to more irregular patterns in the transformed 2-e integrals and thus cast doubt on the validity of the NDDO approximation for extended basis sets. Focusing on the valence-only minimal basis, we find that some of the NDDO-neglected integrals are reduced but remain sizable after the transformation to the Löwdin basis; this is true for the two-center 2-e hybrid integrals, the three-center 1-e nuclear attraction integrals, and the corresponding three-center 2-e hybrid integrals. We consider a scheme with a valence-only minimal basis that includes such terms as a possible strategy to go beyond the NDDO integral approximation in attempts to improve SQC methods. © 2018 Wiley Periodicals, Inc.

摘要

大多数现代半经验量子化学(SQC)方法基于对从头算分子积分的双原子微分重叠忽略(NDDO)近似。在此,我们通过使用高斯型轨道和各种基组(从仅价层的最小基组到全电子三重ζ基组)计算32个典型有机分子的所有相关积分来检验该近似的有效性,总共涵盖超过1560万个单电子(1 - e)积分和103亿个双电子(2 - e)积分。这些积分在非正交原子基中计算,然后通过对称正交化变换到洛文丁基。对于1 - e积分,我们发现了强烈的正交化效应,需要在SQC模型中予以考虑,例如通过可用的OMx方法中采用的那些策略。对于仅价层的最小基组,我们证实洛文丁基中的2 - e库仑积分在数量上接近其在原子基中的对应积分,并且根据NDDO近似,2 - e交换积分可以安全地忽略。对于更大的全电子基组,存在强烈的多壳层正交化效应,导致变换后的2 - e积分出现更不规则的模式,从而对扩展基组的NDDO近似的有效性产生怀疑。聚焦于仅价层的最小基组,我们发现一些被NDDO忽略的积分在变换到洛文丁基后有所减小但仍然可观;对于双中心2 - e混合积分、三中心1 - e核吸引积分以及相应的三中心2 - e混合积分就是如此。我们考虑一种仅使用价层最小基组并包含此类项的方案,作为超越NDDO积分近似以改进SQC方法的一种可能策略。© 2018威利期刊公司

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