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密度泛函二阶微扰理论的辅助基组:4d 元素钇-钯的加权核心价关联一致基组。

Auxiliary basis sets for density-fitting second-order Møller-Plesset perturbation theory: weighted core-valence correlation consistent basis sets for the 4d elements Y-Pd.

机构信息

School of Chemistry, University of Glasgow, Glasgow, G12 8QQ, United Kingdom.

出版信息

J Comput Chem. 2013 Sep 30;34(25):2168-77. doi: 10.1002/jcc.23372. Epub 2013 Jul 5.

DOI:10.1002/jcc.23372
PMID:23828233
Abstract

Auxiliary basis sets (ABS) specifically matched to the cc-pwCVnZ-PP and aug-cc-pwCVnZ-PP orbital basis sets (OBS) have been developed and optimized for the 4d elements Y-Pd at the second-order Møller-Plesset perturbation theory level. Calculation of the core-valence electron correlation energies for small to medium sized transition metal complexes demonstrates that the error due to the use of these new sets in density fitting is three to four orders of magnitude smaller than that due to the OBS incompleteness, and hence is considered negligible. Utilizing the ABSs in the resolution-of-the-identity component of explicitly correlated calculations is also investigated, where it is shown that i-type functions are important to produce well-controlled errors in both integrals and correlation energy. Benchmarking at the explicitly correlated coupled cluster with single, double, and perturbative triple excitations level indicates impressive convergence with respect to basis set size for the spectroscopic constants of 4d monofluorides; explicitly correlated double-ζ calculations produce results close to conventional quadruple-ζ, and triple-ζ is within chemical accuracy of the complete basis set limit.

摘要

已经开发和优化了专门与 cc-pwCVnZ-PP 和 aug-cc-pwCVnZ-PP 轨道基组 (OBS) 匹配的辅助基组 (ABS),用于在二阶 Møller-Plesset 微扰理论水平上计算 4d 元素 Y-Pd。对于中小尺寸过渡金属配合物的芯价电子相关能的计算表明,由于使用这些新集合在密度拟合中的误差比 OBS 不完整的误差小三个到四个数量级,因此可以忽略不计。还研究了在显式相关计算的分辨率-身份分量中使用 ABSs 的情况,结果表明 i 型函数对于产生积分和相关能的良好控制误差非常重要。在显式相关耦合簇中单、双和微扰三激发水平上的基准测试表明,4d 一氟化物的光谱常数在基组大小方面具有令人印象深刻的收敛性;显式相关的双 ζ 计算产生的结果接近传统的四 ζ,而三 ζ 接近完全基组极限的化学精度。

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