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用于涉及磷和硅的间接核自旋-自旋耦合常数高质量计算的新pecJ-( = 1, 2)基组:先进的PEC方法。

New pecJ- ( = 1, 2) Basis Sets for High-Quality Calculations of Indirect Nuclear Spin-Spin Coupling Constants Involving P and Si: The Advanced PEC Method.

作者信息

Rusakov Yuriy Yu, Rusakova Irina L

机构信息

A. E. Favorsky Irkutsk Institute of Chemistry, Siberian Branch of the Russian Academy of Sciences, Favorsky St. 1, 664033 Irkutsk, Russia.

出版信息

Molecules. 2022 Sep 20;27(19):6145. doi: 10.3390/molecules27196145.

Abstract

In this paper, we presented new -oriented basis sets, pecJ- ( = 1, 2), for phosphorus and silicon, purposed for the high-quality correlated calculations of the NMR spin-spin coupling constants involving these nuclei. The pecJ- basis sets were generated using the modified version of the property-energy consistent (PEC) method, which was introduced in our earlier paper. The modifications applied to the original PEC procedure increased the overall accuracy and robustness of the generated basis sets in relation to the diversity of electronic systems. Our new basis sets were successfully tested on a great number of spin-spin coupling constants, involving phosphorus or/and silicon, calculated within the SOPPA(CCSD) method. In general, it was found that our new pecJ-1 and pecJ-2 basis sets are very efficient, providing the overall accuracy that can be characterized by MAEs of about 3.80 and 1.98 Hz, respectively, against the benchmark data obtained with a large dyall.aae4z basis set of quadruple-ζ quality.

摘要

在本文中,我们提出了针对磷和硅的新型基组pecJ-((J = 1, 2)),旨在用于涉及这些原子核的核磁共振自旋-自旋耦合常数的高质量相关计算。pecJ-基组是使用我们早期论文中引入的性质-能量一致(PEC)方法的修改版本生成的。对原始PEC程序所做的修改提高了生成基组在电子系统多样性方面的整体准确性和稳健性。我们的新基组在大量涉及磷或/和硅的自旋-自旋耦合常数上成功进行了测试,这些常数是在SOPPA(CCSD)方法中计算得出的。总体而言,发现我们新的pecJ-1和pecJ-2基组非常有效,相对于使用具有四重ζ质量的大型dyall.aae4z基组获得的基准数据,其整体准确性分别可以用约3.8赫兹和1.98赫兹的平均绝对误差来表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7be5/9573013/01781a3acc35/molecules-27-06145-g001.jpg

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