Saielli Giacomo, Bagno Alessandro, Castiglione Franca, Simonutti Roberto, Mauri Michele, Mele Andrea
CNR - Istituto per la Tecnologia delle Membrane, Unità di Padova , Via Marzolo, 1, 35131 Padova, Italy.
J Phys Chem B. 2014 Dec 4;118(48):13963-8. doi: 10.1021/jp511207s. Epub 2014 Nov 21.
(129)Xe NMR has been recently employed to probe the local structure of ionic liquids (ILs). However, no theoretical investigation has been yet reported addressing the problem of the dependence of the chemical shift of xenon on the cage structure of the IL. Therefore, we present here a study of the chemical shift of (129)Xe in two ionic liquids, [bmim][Cl] and [bmim][PF6], by a combination of classical MD simulations and relativistic DFT calculations of the xenon shielding constant. The bulk structure of the two ILs is investigated by means of the radial distribution functions, paying special attention to the local structure, volume, and charge distribution of the cage surrounding the xenon atom. Relativistic DFT calculations, based on the ZORA formalism, on clusters extracted from the trajectory files of the two systems, yield an average relative chemical shift in good agreement with the experimental data. Our results demonstrate the importance of the cage volume and the average charge surrounding the xenon nucleus in the IL cage as the factors determining the effective shielding.
最近,(129)Xe核磁共振已被用于探究离子液体(ILs)的局部结构。然而,尚未有理论研究报道氙的化学位移对离子液体笼状结构的依赖性问题。因此,我们在此通过结合经典分子动力学模拟和氙屏蔽常数的相对论密度泛函计算,对两种离子液体[bmim][Cl]和[bmim][PF6]中(129)Xe的化学位移进行了研究。通过径向分布函数研究了这两种离子液体的整体结构,特别关注围绕氙原子的笼状结构的局部结构、体积和电荷分布。基于ZORA形式的相对论密度泛函计算,对从两个系统的轨迹文件中提取的团簇进行计算,得到的平均相对化学位移与实验数据吻合良好。我们的结果表明,离子液体笼状结构中笼体积和氙原子核周围的平均电荷作为决定有效屏蔽的因素具有重要意义。