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使用Molpro和ORCA中的显式相关局部耦合簇方法精确计算较大分子的异构化和构象能。

Accurate Calculation of Isomerization and Conformational Energies of Larger Molecules Using Explicitly Correlated Local Coupled Cluster Methods in Molpro and ORCA.

作者信息

Werner Hans-Joachim, Hansen Andreas

机构信息

Institut für Theoretische Chemie, Universität Stuttgart, Pfaffenwaldring 55, D-70569 Stuttgart, Germany.

Mulliken Center for Theoretical Chemistry, Universität Bonn, Beringstrasse 4, D-53115 Bonn, Germany.

出版信息

J Chem Theory Comput. 2023 Oct 24;19(20):7007-7030. doi: 10.1021/acs.jctc.3c00270. Epub 2023 Jul 24.

DOI:10.1021/acs.jctc.3c00270
PMID:37486154
Abstract

An overview of the approximations in the explicitly correlated local coupled cluster methods PNO-LCCSD(T)-F12 in Molpro and DLPNO-CCSD(T) in ORCA is given. Options to select the domains of projected atomic orbitals (PAOs), pair natural orbitals (PNOs), and triples natural orbitals (TNOs) in both programs are described and compared in detail. The two programs are applied to compute isomerization and conformational energies of the ISOL24 and ACONFL test sets, where the former is part of the GMTKN55 benchmark suite. Thorough studies of basis set effects are presented for selected systems. These revealed large intramolecular basis set superposition effects that make it practically impossible to reliably determine the complete basis set (CBS) limits without including explicitly correlated terms. The latter strongly reduce the basis set dependence and at the same time also errors caused by the local domain approximations. On the basis of these studies, the PNO-LCCSD(T)-F12 method is applied to determine new reference energies for the above-mentioned benchmark sets. We are confident that our results should agree within a few tenths of a kcal mol with the (unknown) CCSD(T)/CBS values, which therefore allowed us to define computational settings for accurate explicitly correlated local coupled cluster methods with moderate computational effort. With these protocols, especially PNO-LCCSD(T)-F12b/AVTZ', reliable reference values for comprehensive benchmark sets can be generated efficiently. This can significantly advance the development and evaluation of the performance of approximate electronic structure methods, especially improved density functional approximations or machine learning approaches.

摘要

本文给出了Molpro中的显式相关局部耦合簇方法PNO-LCCSD(T)-F12和ORCA中的DLPNO-CCSD(T)中近似方法的概述。详细描述并比较了两个程序中选择投影原子轨道(PAO)、对自然轨道(PNO)和三重自然轨道(TNO)域的选项。这两个程序被应用于计算ISOL24和ACONFL测试集的异构化和构象能,其中前者是GMTKN55基准套件的一部分。对选定系统进行了基组效应的深入研究。这些研究揭示了较大的分子内基组叠加效应,这使得在不包括显式相关项的情况下几乎不可能可靠地确定完整基组(CBS)极限。显式相关项极大地降低了对基组的依赖性,同时也减少了由局域域近似引起的误差。基于这些研究,PNO-LCCSD(T)-F12方法被应用于确定上述基准集的新参考能量。我们相信,我们的结果应该与(未知的)CCSD(T)/CBS值在几十分之一千卡每摩尔的范围内一致,因此这使我们能够定义计算设置,以适度的计算量实现精确的显式相关局部耦合簇方法。通过这些协议,特别是PNO-LCCSD(T)-F12b/AVTZ',可以高效地生成综合基准集的可靠参考值。这可以显著推进近似电子结构方法性能的开发和评估,特别是改进的密度泛函近似或机器学习方法。

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