García de la Vega J M, Omar S, San Fabián J
Departamento de Química Física Aplicada, Facultad de Ciencias, Universidad Autónoma de Madrid, 28049, Madrid, Spain.
J Mol Model. 2017 Apr;23(4):134. doi: 10.1007/s00894-017-3303-2. Epub 2017 Mar 24.
Spin-spin coupling constants in water monomer and dimer have been calculated using several wave function and density functional-based methods. CCSD, MCSCF, and SOPPA wave functions methods yield similar results, specially when an additive approach is used with the MCSCF. Several functionals have been used to analyze their performance with the Jacob's ladder and a set of functionals with different HF exchange were tested. Functionals with large HF exchange appropriately predict J , J and J couplings, while J is better calculated with functionals that include a reduced fraction of HF exchange. Accurate functionals for J and J have been tested in a tetramer water model. The hydrogen bond effects on these intramolecular couplings are additive when they are calculated by SOPPA(CCSD) wave function and DFT methods. Graphical Abstract Evaluation of the additive effect of the hydrogen bond on spin-spin coupling constants of water using WF and DFT methods.
已使用多种基于波函数和密度泛函的方法计算了水单体和二聚体中的自旋-自旋耦合常数。CCSD、MCSCF和SOPPA波函数方法得出了相似的结果,特别是当对MCSCF使用相加方法时。已使用多种泛函通过雅各布天梯分析其性能,并测试了一组具有不同HF交换的泛函。具有大量HF交换的泛函能适当地预测(J)、(J)和(J)耦合,而(J)用包含减少比例HF交换的泛函计算效果更好。已在四聚体水模型中测试了用于(J)和(J)的精确泛函。当通过SOPPA(CCSD)波函数和DFT方法计算时,氢键对这些分子内耦合的影响是相加的。图形摘要 使用WF和DFT方法评估氢键对水的自旋-自旋耦合常数的相加效应。