NMR Research Centre, Indian Institute of Science, Bangalore 560012, India.
Phys Chem Chem Phys. 2010 Oct 28;12(40):13232-7. doi: 10.1039/c0cp00492h. Epub 2010 Sep 6.
Using (19)F and (1)H-NMR (with (14)N decoupling) spectroscopic techniques together with density functional theoretical (DFT) calculations, we have investigated weak molecular interactions in isomeric fluorinated benzanilides. Simultaneous presence of through space nuclear spin-spin couplings ((1h)J(N-HF)) of diverse strengths and feeble structural fluctuations are detected as a function of site specific substitution of fluorine atoms within the basic identical molecular framework. The transfer of hydrogen bonding interaction energies through space is established by perturbing their strengths and monitoring the effect on NMR parameters. Multiple quantum (MQ) excitation, up to the highest possible MQ orders of coupled protons, is utilized as a tool for accurate (1)H assignments. Results of NMR studies and DFT calculations are compared with the relevant structural parameters taken from single crystal X-ray diffraction studies.
利用(19)F 和(1)H-NMR(带(14)N 去耦)光谱技术和密度泛函理论(DFT)计算,我们研究了同分异构氟苯甲酰苯胺中的弱分子相互作用。同时存在不同强度的核自旋-自旋偶合((1h)J(NF))和微弱的结构波动,作为在基本相同的分子框架内特定位置取代氟原子的函数。通过改变它们的强度并监测对 NMR 参数的影响,确定了氢键相互作用能在空间中的传递。利用多量子(MQ)激发,直到可能的最高耦合质子的 MQ 阶数,作为准确(1)H 分配的工具。NMR 研究和 DFT 计算的结果与单晶 X 射线衍射研究中获得的相关结构参数进行了比较。