Fowe Emmanuel Penka, Belser Peter, Daul Claude, Chermette Henry
Département de Chimie, Université de Fribourg, chemin du Musée 9, CH-1700 Fribourg, Switzerland.
Phys Chem Chem Phys. 2005 Apr 21;7(8):1732-8. doi: 10.1039/b500574d.
In the present work, the ZORA spin-orbit Hamiltonian, in conjunction with the gauge including orbital (GIAO) method based on DFT theory has been used to calculate 195Pt chemical shift of 195PtClxBr(6-x)(2-) complexes. Excellent agreement with experiments has been obtained for calculations bearing on optimized geometries and all electrons triple zeta + polarization (TZP) STO basis sets: the relative error with respect to experiment amounts to <1.5%. It is found that the Pt chemical shift is dominated by the paramagnetic and the spin orbit contribution, whereas the diamagnetic term remains negligible. The influence of the quality of the basis sets has been studied and found to be small, provided a basis set like TZP is used. Several calculations have been performed in order to establish the sensitivity of the chemical shift to a variation in the bond lengths. A strong dependence has been found, with an increase of the chemical shift amounting to 150 ppm pm(-1) for a distance decrease. Large sensitivity to the solvation, leading to changes in the structure, is then expected. Different tests using conductor-like screening models have been performed in order to establish the sensitivity of the chemical shift to solvation. It has been observed that the changes in the geometry are more important than charge transfers. Finally, the sensitivity of the system to the exchange-correlation functional is found rather weak, at least among the GGA functionals.
在本工作中,基于密度泛函理论(DFT)的含轨道规范(GIAO)方法与ZORA自旋 - 轨道哈密顿量相结合,用于计算195PtClxBr(6 - x)(2 - )配合物的195Pt化学位移。对于基于优化几何结构和全电子三重ζ + 极化(TZP)STO基组的计算,与实验结果取得了极好的一致性:相对于实验的相对误差小于1.5%。研究发现,Pt化学位移主要由顺磁和自旋轨道贡献主导,而抗磁项仍然可以忽略不计。研究了基组质量的影响,发现只要使用像TZP这样的基组,其影响就很小。为了确定化学位移对键长变化的敏感性,进行了多次计算。结果发现存在很强的依赖性,距离每减小,化学位移增加量可达150 ppm pm(-1)。因此,可以预期该体系对溶剂化具有很大的敏感性,这会导致结构发生变化。为了确定化学位移对溶剂化的敏感性,使用类导体屏蔽模型进行了不同的测试。已经观察到,几何结构的变化比电荷转移更为重要。最后,发现该体系对交换 - 相关泛函的敏感性相当弱,至少在广义梯度近似(GGA)泛函中是这样。