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固态体系中过渡金属原子核NMR屏蔽张量在周期性边界条件下的第一性原理计算:以AlVO₄中的⁵¹V为例。

First-principles calculations within periodic boundary conditions of the NMR shielding tensor for a transition metal nucleus in a solid state system: The example of 51V in AlVO4.

作者信息

Truflandier L, Paris M, Payen C, Boucher F

出版信息

J Phys Chem B. 2006 Nov 2;110(43):21403-7. doi: 10.1021/jp0648137.

Abstract

We present the first density functional theory based calculations of NMR shielding parameters for a transition metal nucleus using periodic boundary conditions. These calculations employ the gauge-including projected augmented-wave pseudopotential approach. The quality of this method is discussed by comparing experimental and calculated chemical shift tensor eigenvalues for the quadrupolar 51V nucleus in the diamagnetic solid-state compound AlVO4. Furthermore, the combination of shielding tensor with fast and accurate projector augmented-wave electric field gradient tensor calculations allows us to determine the relative orientation of these two tensors.

摘要

我们展示了基于密度泛函理论,使用周期性边界条件对过渡金属原子核的核磁共振屏蔽参数进行的首次计算。这些计算采用了包含规范的投影增强波赝势方法。通过比较抗磁性固态化合物AlVO₄中四极⁵¹V原子核的实验和计算化学位移张量本征值,讨论了该方法的质量。此外,屏蔽张量与快速准确的投影增强波电场梯度张量计算相结合,使我们能够确定这两个张量的相对取向。

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