Jokisaari J, Kantola A M, Vaara J
University of Oulu, NMR Research Unit, P.O. Box 3000, FI-90014, Finland.
J Magn Reson. 2017 Aug;281:1-6. doi: 10.1016/j.jmr.2017.04.010. Epub 2017 Apr 26.
In principle, all the NMR observables, spin-spin coupling J, nuclear shielding σ and quadrupole coupling q, are magnetic field-dependent. The field dependence may be classified into two categories: direct and indirect (apparent) dependence. The former arises from the magnetic field-induced deformation of the molecular electronic cloud, while the latter stems from a slightly anisotropic orientation distribution of molecules, due to the interaction between the anisotropy of the molecular susceptibility tensor and the external magnetic field. Here we use 1,3,5-D-benzene as a model system to investigate the indirect effect on the one-bond H-C and H-C spin-spin couplings (J couplings) and the H quadrupole coupling. Experiments carried out at four magnetic fields (4.7, 9.4, 14.1, and 18.8 T) show that the indirect effect is significant already at the magnetic fields commonly used in NMR spectrometers. A joint fit of the data extracted at the different field strengths provides experimental results for the susceptibility anisotropy, H quadrupole coupling constant and the related asymmetry parameter, as well as the one-bond CH and CD coupling constants extrapolated to vanishing field strength. The field-induced contributions are found to exceed the commonly assumed error margins of the latter. The data also indicate a primary isotope effect on the one-bond CH coupling constant. There is a tendency to further increase the magnetic field of NMR spectrometers, which leads to more pronounced indirect contributions and eventually significant direct effects as well.
原则上,所有核磁共振可观测值,如自旋 - 自旋耦合常数J、核屏蔽σ和四极耦合常数q,都与磁场有关。磁场依赖性可分为两类:直接依赖性和间接(表观)依赖性。前者源于磁场引起的分子电子云变形,而后者则源于分子磁化率张量各向异性与外部磁场相互作用导致的分子取向分布略微各向异性。在这里,我们以1,3,5 - D - 苯为模型系统,研究对一键H - C和H - C自旋 - 自旋耦合(J耦合)以及H四极耦合的间接影响。在四个磁场(4.7、9.4、14.1和18.8 T)下进行的实验表明,在核磁共振光谱仪常用的磁场下,间接效应就已经很显著。对在不同场强下提取的数据进行联合拟合,可得到磁化率各向异性、H四极耦合常数和相关不对称参数的实验结果,以及外推到零场强时的一键CH和CD耦合常数。发现场致贡献超过了后者通常假定的误差范围。数据还表明一键CH耦合常数存在主要同位素效应。核磁共振光谱仪有进一步提高磁场强度的趋势,这会导致更显著的间接贡献,最终也会产生显著的直接效应。