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自旋轨道ZORA以及对稀有气体二聚体各向同性核屏蔽和化学位移相对论校正的四分量狄拉克-库仑估计。

Spin-orbit ZORA and four-component Dirac-Coulomb estimation of relativistic corrections to isotropic nuclear shieldings and chemical shifts of noble gas dimers.

作者信息

Jankowska Marzena, Kupka Teobald, Stobiński Leszek, Faber Rasmus, Lacerda Evanildo G, Sauer Stephan P A

机构信息

Faculty of Chemistry, University of Opole, 48, Oleska Str., 45-052, Opole, Poland.

Polish Academy of Sciences, Institute of Physical Chemistry, 44/52, Kasprzaka, Str., 01-224, Warsaw, Poland.

出版信息

J Comput Chem. 2016 Feb 5;37(4):395-403. doi: 10.1002/jcc.24228. Epub 2015 Oct 27.

Abstract

Hartree-Fock and density functional theory with the hybrid B3LYP and general gradient KT2 exchange-correlation functionals were used for nonrelativistic and relativistic nuclear magnetic shielding calculations of helium, neon, argon, krypton, and xenon dimers and free atoms. Relativistic corrections were calculated with the scalar and spin-orbit zeroth-order regular approximation Hamiltonian in combination with the large Slater-type basis set QZ4P as well as with the four-component Dirac-Coulomb Hamiltonian using Dyall's acv4z basis sets. The relativistic corrections to the nuclear magnetic shieldings and chemical shifts are combined with nonrelativistic coupled cluster singles and doubles with noniterative triple excitations [CCSD(T)] calculations using the very large polarization-consistent basis sets aug-pcSseg-4 for He, Ne and Ar, aug-pcSseg-3 for Kr, and the AQZP basis set for Xe. For the dimers also, zero-point vibrational (ZPV) corrections are obtained at the CCSD(T) level with the same basis sets were added. Best estimates of the dimer chemical shifts are generated from these nuclear magnetic shieldings and the relative importance of electron correlation, ZPV, and relativistic corrections for the shieldings and chemical shifts is analyzed.

摘要

采用Hartree-Fock方法以及具有混合B3LYP和广义梯度KT2交换关联泛函的密度泛函理论,对氦、氖、氩、氪和氙的二聚体及自由原子进行非相对论和相对论性核磁共振屏蔽计算。相对论修正通过标量和自旋轨道零阶正则近似哈密顿量结合大斯莱特型基组QZ4P进行计算,同时也使用Dyall的acv4z基组结合四分量狄拉克-库仑哈密顿量进行计算。对核磁共振屏蔽和化学位移的相对论修正与使用非常大的极化一致基组的非相对论耦合簇单双激发并包含非迭代三激发[CCSD(T)]计算相结合,对于氦、氖和氩使用aug-pcSseg-4基组,对于氪使用aug-pcSseg-3基组,对于氙使用AQZP基组。对于二聚体,同样在CCSD(T)水平使用相同基组添加零点振动(ZPV)修正。由这些核磁共振屏蔽生成二聚体化学位移的最佳估计值,并分析电子关联、ZPV以及屏蔽和化学位移的相对论修正的相对重要性。

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