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首页> 外文期刊>The Journal of Chemical Physics >Calculation of nuclear magnetic resonance shieldings using frozen-density embedding
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Calculation of nuclear magnetic resonance shieldings using frozen-density embedding

机译:使用冻结密度嵌入计算核磁共振屏蔽

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We have extended the frozen-density embedding (FDE) scheme within density-functional theory [T.A.Wesolowski and A.Warshel,J.Phys.Chem.97,8050 (1993)] to include external magnetic fields and applied this extension to the nonrelativistic calculation of nuclear magnetic resonance (NMR) shieldings.This leads to a formulation in which the electron density and the induced current are calculated separately for the individual subsystems.If the current dependence of the exchange-correlation functional and of the nonadditive kinetic-energy functional are neglected,the induced currents in the subsystems are not coupled and each of them can be determined without knowledge of the induced current in the other subsystem.This allows the calculation of the NMR shielding as a sum of contributions of the individual subsystems.As a test application,we have calculated the solvent shifts of the nitrogen shielding of acetonitrile for different solvents using small geometry-optimized clusters consisting of acetonitrile and one solvent molecule.By comparing to the solvent shifts obtained from supermolecular calculations we assess the accuracy of the solvent shifts obtained from FDE calculations.We find a good agreement between supermolecular and FDE calculations for different solvents.In most cases it is possible to neglect the contribution of the induced current in the solvent subsystem to the NMR shielding,but it has to be considered for aromatic solvents.We demonstrate that FDE can describe the effect of induced currents in the environment accurately.
机译:我们已经在密度泛函理论[TAWesolowski和A.Warshel,J.Phys.Chem.97,8050(1993)]中扩展了冻结密度嵌入(FDE)方案,以包括外部磁场,并将此扩展应用于非相对论。核磁共振(NMR)屏蔽层的计算,从而得出公式,其中分别计算了各个子系统的电子密度和感应电流。如果电流与交换相关函数和非相加动能函数有关忽略,子系统中的感应电流不耦合,并且可以在不知道另一个子系统中的感应电流的情况下确定它们中的每一个。这允许将NMR屏蔽计算为各个子系统的贡献之和。在测试应用中,我们使用由ac组成的小型几何优化簇计算了不同溶剂的乙腈氮保护层的溶剂位移乙腈和一个溶剂分子通过与从超分子计算获得的溶剂变化进行比较,我们评估了从FDE计算获得的溶剂变化的准确性,我们发现对于不同溶剂,超分子计算和FDE计算之间具有良好的一致性,在大多数情况下,可以忽略了溶剂子系统中感应电流对NMR屏蔽的影响,但对于芳香族溶剂则必须考虑。我们证明FDE可以准确地描述环境中感应电流的影响。

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