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迈向无单激发的可靠偶极矩:轨道旋转和动态关联的作用

Toward Reliable Dipole Moments without Single Excitations: The Role of Orbital Rotations and Dynamical Correlation.

作者信息

Chakraborty Rahul, de Moraes Matheus Morato F, Boguslawski Katharina, Nowak Artur, Świerczyński Julian, Tecmer Paweł

机构信息

Institute of Physics, Faculty of Physics, Astronomy, and Informatics, Nicolaus Copernicus University in Toruń, Grudziadzka 5, 87-100 Toruń, Poland.

Institute of Engineering and Technology, Faculty of Physics, Astronomy, and Informatics, Nicolaus Copernicus University in Toruń, Grudzia̧dzka 5, 87-100 Toruń, Poland.

出版信息

J Chem Theory Comput. 2024 Jun 11;20(11):4689-4702. doi: 10.1021/acs.jctc.4c00471. Epub 2024 May 29.

Abstract

The dipole moment is a crucial molecular property linked to a molecular system's bond polarity and overall electronic structure. To that end, the electronic dipole moment, which results from the electron density of a system, is often used to assess the accuracy and reliability of new electronic structure methods. This work analyses electronic dipole moments computed with the pair coupled cluster doubles (pCCD) ansätze and its linearized coupled cluster (pCCD-LCC) corrections using the canonical Hartree-Fock and pCCD-optimized (localized) orbital bases. The accuracy of pCCD-based dipole moments is assessed against experimental and CCSD(T) reference values using relaxed and unrelaxed density matrices and different basis set sizes. Our test set comprises molecules of various bonding patterns and electronic structures, exposing pCCD-based methods to a wide range of electron correlation effects. Additionally, we investigate the performance of pCCD-in-DFT dipole moments of some model complexes. Finally, our work indicates the importance of orbital relaxation in the pCCD model and shows the limitations of the linearized couple cluster corrections in predicting electronic dipole moments of multiple-bonded systems. Most importantly, pCCD with a linearized CCD correction can reproduce the dipole moment surfaces in singly bonded molecules, which are comparable to the multireference ones.

摘要

偶极矩是一种关键的分子性质,与分子体系的键极性和整体电子结构相关。为此,由体系电子密度产生的电子偶极矩常被用于评估新电子结构方法的准确性和可靠性。这项工作分析了使用正则Hartree-Fock和pCCD优化(定域)轨道基组,通过对耦合簇双激发(pCCD)近似及其线性化耦合簇(pCCD-LCC)校正计算得到的电子偶极矩。使用松弛和非松弛密度矩阵以及不同基组大小,将基于pCCD的偶极矩的准确性与实验值和CCSD(T)参考值进行对比评估。我们的测试集包含具有各种键合模式和电子结构的分子,使基于pCCD的方法面临广泛的电子相关效应。此外,我们研究了一些模型配合物的pCCD-in-DFT偶极矩的性能。最后,我们的工作表明了轨道松弛在pCCD模型中的重要性,并展示了线性化耦合簇校正在预测多键体系电子偶极矩方面的局限性。最重要的是,具有线性化CCD校正的pCCD能够重现单键分子中的偶极矩表面,这与多参考方法得到的结果相当。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79d6/11171297/d405d932ee0c/ct4c00471_0001.jpg

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