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使用高分辨率 11B NMR 和密度泛函理论研究硼酸中的光谱分配和 NMR 参数-结构关系。

Spectral assignments and NMR parameter-structure relationships in borates using high-resolution 11B NMR and density functional theory.

机构信息

Department of Physics, University of Warwick, CV4 7AL, UK.

出版信息

Phys Chem Chem Phys. 2013 Jun 7;15(21):8208-21. doi: 10.1039/c3cp50772f. Epub 2013 Apr 23.

Abstract

High-resolution, solid-state (11)B NMR spectra have been obtained at high magnetic fields for a range of polycrystalline borates using double-rotation (DOR), multiple-quantum magic angle spinning and isotopic dilution. DOR linewidths can be less than 0.2 ppm in isotopically diluted samples, allowing highly accurate values for the isotropic chemical shift, δiso, and electric field gradient to be obtained. The experimental values are used as a test of density functional calculations using both projector augmented wave based CASTEP and WIEN2k. The CASTEP calculations of δiso are generally in very good agreement with experiment, having r.m.s. deviation 0.40 ppm. WIEN2k calculations of electric field gradient magnitude, CQ, and asymmetry, η, are also in excellent agreement with experiment, with r.m.s. deviations 0.038 MHz and 0.042 respectively. However, whilst CASTEP gives a similar deviation for η (0.043) it overestimates CQ by ∼15%. After scaling of the calculated electric field gradient by 0.842 the deviation in CQ is practically identical to that of the WIEN2k calculations. The spectral assignments that follow from the experimental and computational results allow identification of correlations between δiso and (a) the average B-O-B bond angle, θ[combining overline], for both three and four coordinated boron, giving δiso(B(III)) = (185.1 -θ[combining overline])/3.42 ppm and δiso(B(IV)) = (130.2 -θ[combining overline])/5.31 ppm; and (b) the ring-site T(3) unit trigonal planar angular deviation, Stri, giving δiso(T(3)(ring)) = (1.642 × 10(-2)-Stri)/(8.339 × 10(-4)) ppm.

摘要

已在高磁场下使用双旋转(DOR)、多量子魔法角旋转和同位素稀释获得了一系列多晶硼酸的高分辨率固态(11)B NMR 谱。在同位素稀释样品中,DOR 线宽可以小于 0.2 ppm,从而可以获得各向同性化学位移δiso和电场梯度非常准确的值。实验值可用于基于投影增强波的 CASTEP 和 WIEN2k 的密度泛函计算的检验。δiso 的 CASTEP 计算通常与实验非常吻合,均方根偏差为 0.40 ppm。电场梯度幅度 CQ 和不对称性η的 WIEN2k 计算也与实验非常吻合,均方根偏差分别为 0.038 MHz 和 0.042。然而,尽管 CASTEP 给出了与实验相似的η偏差(0.043),但它高估了 CQ 约 15%。在将计算出的电场梯度乘以 0.842 进行缩放后,CQ 的偏差实际上与 WIEN2k 计算的偏差相同。从实验和计算结果得出的光谱分配允许确定δiso与(a)三个和四个配位硼的平均 B-O-B 键角θ[上划线]之间的相关性,给出δiso(B(III))=(185.1-θ[上划线])/3.42 ppm 和 δiso(B(IV))=(130.2-θ[上划线])/5.31 ppm;以及(b)环位 T(3)单元三角平面角偏差 Stri,给出 δiso(T(3)(环))=(1.642×10(-2)-Stri)/(8.339×10(-4))ppm。

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