Hansen Mikkel B, Kongsted Jacob, Toffoli Daniele, Christiansen Ove
The Lundbeck Foundation Center for Theoretical Chemistry, Department of Chemistry, University of Arhus, Langelandsgade 140, DK-8000 Arhus C, Denmark.
J Phys Chem A. 2008 Sep 11;112(36):8436-45. doi: 10.1021/jp804306s. Epub 2008 Aug 15.
Zero-point vibrational contributions to indirect spin-spin coupling constants for N2, CO, HF, H2O, C2H2, and CH4 are calculated via explicitly anharmonic approaches. Thermal averages of indirect spin-spin coupling constants are calculated for the same set of molecules and for C2X4, X = H, F, Cl. Potential energy surfaces have been calculated on a grid of points and analytic representations have been obtained by a linear least-squares fit in a direct product polynomial basis. Property surfaces have been represented by a fourth-order Taylor expansion around the equilibrium geometry. The electronic structure calculations employ density functional theory, and vibrational contributions to indirect spin-spin coupling constants are calculated employing vibrational self-consistent-field and vibrational configuration-interaction methods. The performance of vibrational perturbation theory and various approximate variational calculations are discussed. Thermal averages are computed by state-specific and virtual vibrational self-consistent-field methods.
通过显式非谐方法计算了N₂、CO、HF、H₂O、C₂H₂和CH₄间接自旋-自旋耦合常数的零点振动贡献。对同一组分子以及C₂X₄(X = H、F、Cl)计算了间接自旋-自旋耦合常数的热平均值。在点网格上计算了势能面,并通过在直积多项式基中进行线性最小二乘拟合获得了解析表示。性质面由围绕平衡几何结构的四阶泰勒展开表示。电子结构计算采用密度泛函理论,采用振动自洽场和振动组态相互作用方法计算了间接自旋-自旋耦合常数的振动贡献。讨论了振动微扰理论和各种近似变分计算的性能。通过特定状态和虚拟振动自洽场方法计算热平均值。