Gerber Iann C, Jolibois Franck
Université de Toulouse-INSA-UPS, LPCNO, CNRS UMR 5215, 135 av. de Rangueil, F-31077 Toulouse, France.
Phys Chem Chem Phys. 2015 May 14;17(18):12222-7. doi: 10.1039/c5cp00722d.
Chemical shift requires the knowledge of both the sample and a reference magnetic shielding. In few cases as nitrogen (15N), the standard experimental reference corresponds to its liquid phase. Theoretical estimate of NMR magnetic shielding parameters of compounds in their liquid phase is then mandatory but usually replaced by an easily-get gas phase value, forbidding direct comparisons with experiments. We propose here to combine ab initio molecular dynamic simulations with the calculations of magnetic shielding using GIAO approach on extracted cluster's structures from MD. Using several computational strategies, we manage to accurately calculate 15N magnetic shielding of nitromethane in its liquid phase. Theoretical comparison between liquid and gas phase allows us to extrapolate an experimental value for the 15N magnetic shielding of nitromethane in gas phase between -121.8 and -120.8 ppm.
化学位移需要了解样品和参考磁屏蔽。在少数情况下,如氮(15N),标准实验参考对应其液相。因此,必须对化合物液相的核磁共振磁屏蔽参数进行理论估计,但通常用容易获得的气相值代替,这使得无法与实验进行直接比较。我们在此提议将从头算分子动力学模拟与使用GIAO方法对从分子动力学中提取的团簇结构进行磁屏蔽计算相结合。通过几种计算策略,我们成功地准确计算了液相中硝基甲烷的15N磁屏蔽。液相和气相之间的理论比较使我们能够推断出气相中硝基甲烷的15N磁屏蔽的实验值在-121.8至-120.8 ppm之间。