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Quadrupolar N-14 NMR Relaxation from Force-Field and Ab Initio Molecular Dynamics in Different Solvents

机译:Quadrupolar N-14 NMR松弛来自不同溶剂中的力场和AB Initio分子动力学

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Quadrupolar NMR spin relaxation rates and corresponding line widths were computed for the quadrupolar nucleus N-14 for neat acetonitrile as well as for 1-methyl-1,3-imidazole and 1-methyl-1,3,4-triazole in different solvents. Molecular dynamics (MD) was performed with forces from the Kohn-Sham (KS) theory (ab initio MD) and force-field molecular mechanics (classical MD), followed by KS electric field gradient (EFG) calculations. For acetonitrile the agreement of the N-14 line width with experiment is very good. Relative line widths for the azole nitrogens are improved over simpler approximations used previously in conjunction with single-point calculations at the multiconfigurational self-consistent field level. Overall, the NMR line widths are computed within a factor of 2 of the experimental values, giving access to reasonable estimates both of the dynamic EFG variance in the solvated systems as well as the associated correlation times that determine the relaxation rates.
机译:用于整齐的乙腈以及1-甲基-1,3-咪唑和1-甲基-1,3,4-三唑(不同溶剂)计算Quadrupolar核N-14的Quadrupolar NMR旋转速率和相应的线宽。 分子动力学(MD)与来自Kohn-Sham(KS)理论(AB INITIO MD)和力场分子力学(古典MD)的力进行,然后是KS电场梯度(EFG)计算。 对于乙腈,N-14线宽与实验的协议非常好。 唑氮的相对线宽在先前使用的更简单地使用的近似与多功能性自我一致性场级别的单点计算使用的更简单近似。 总的来说,NMR线宽在实验值的2个因子中计算,可接受合理估计溶剂化系统中的动态EFG方差以及确定放松率的相关相关时间。

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