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高场(33)S 固态 NMR 和硫酸钾的第一性原理计算。

High field (33)S solid state NMR and first-principles calculations in potassium sulfates.

机构信息

Steacie Institute for Molecular Sciences, National Research Council, 100 Sussex Drive, Ottawa, K1A 0R6, Ontario, Canada.

出版信息

J Phys Chem A. 2010 Jan 14;114(1):309-16. doi: 10.1021/jp908206c.

Abstract

A set of potassium sulfates presenting a variety of sulfur environments (K(2)SO(4), KHSO(4), K(2)S(2)O(7), and K(2)S(2)O(8)) has been studied by (33)S solid state NMR at 21 T. Low natural abundance (0.75%) and small gyromagnetic ratio of (33)S presented a serious challenge even at such a high magnetic field. Nevertheless, using the QCPMG technique we were able to obtain good signals from the sites with C(Q) values approaching 16 MHz. Assignment of the sites and the relative orientations of the EFG tensors were assisted by quantum mechanical calculations using the Gaussian 98 and CASTEP packages. The Gaussian 98 calculations were performed using the density functional method and gauge independent atomic orbitals on molecular clusters of about 100-120 atoms. The CASTEP calculations utilized periodic boundary conditions and a gauge-including projector augmented-wave pseudopotential approach. Although only semiquantitative agreement is observed between the experimental and calculated parameters, the calculations are a very useful aid in the interpretation of experimental data.

摘要

一套呈现多种硫环境的硫酸钾(K(2)SO(4)、KHSO(4)、K(2)S(2)O(7)和 K(2)S(2)O(8))已经在 21 T 的磁场下通过 (33)S 固态 NMR 进行了研究。即使在如此高的磁场下,(33)S 的天然丰度低(0.75%)和较小的磁旋比也带来了严重的挑战。然而,我们使用 QCPMG 技术成功地从接近 16 MHz 的 C(Q)值的位点获得了良好的信号。使用 Gaussian 98 和 CASTEP 软件包进行量子力学计算,辅助了对位点的分配和电场梯度张量的相对取向的确定。Gaussian 98 计算使用密度泛函方法和分子簇的规范独立原子轨道,分子簇的大小约为 100-120 个原子。CASTEP 计算利用了周期性边界条件和包含规范的投影增强波赝势方法。尽管实验和计算参数之间仅观察到半定量的一致性,但计算对于解释实验数据是非常有用的辅助工具。

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