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A Practical Review of NMR Lineshapes for Spin-1/2 and Quadrupolar Nuclei in Disordered Materials

机译:用于旋转1/2和Quadrupolar核的无序材料NMR SinioShapes的实际综述

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摘要

NMR is a powerful spectroscopic method that can provide information on the structural disorder in solids, complementing scattering and diffraction techniques. The structural disorder in solids can generate a dispersion of local magnetic and electric fields, resulting in a distribution of isotropic chemical shift δ and quadrupolar coupling C . For spin-1/2 nuclei, the NMR linewidth and shape under high-resolution magic-angle spinning (MAS) reflects the distributions of isotropic chemical shift, providing a rich source of disorder information. For quadrupolar nuclei, the second-order quadrupolar broadening remains present even under MAS. In addition to isotropic chemical shift, structural disorder can impact the electric field gradient (EFG) and consequently the quadrupolar NMR parameters. The distributions of quadrupolar coupling and isotropic chemical shift are superimposed with the second-order quadrupolar broadening, but can be potentially characterized by MQMAS (multiple-quantum magic-angle spinning) spectroscopy. We review analyses of NMR lineshapes in 2D DQ–SQ (double-quantum single-quantum) and MQMAS spectroscopies, to provide a guide for more general lineshape analysis. In addition, methods to enhance the spectral resolution and sensitivity for quadrupolar nuclei are discussed, including NMR pulse techniques and the application of high magnetic fields. The role of magnetic field strength and its impact on the strategy of determining optimum NMR methods for disorder characterization are also discussed.
机译:NMR是一种强大的光谱方法,可以提供有关固体结构障碍的信息,互补散射和衍射技术。固体中的结构障碍可以产生局部磁场和电场的分散,导致各向同性化学移位δ和Quadrupolar耦合C的分布。对于旋转-1 / 2核,高分辨率魔法角纺(MAS)下的NMR线宽和形状反映了各向同性化学转变的分布,提供了丰富的无序信息来源。对于Quadrupolar nuclei,即使在MAS下,二阶Quadrupolar拓展仍然存在。除了各向同性化学换档之外,结构障碍可能会影响电场梯度(EFG),从而影响Quadrupolar NMR参数。 Quadrupolar耦合和各向同性化学位移的分布叠加在二阶Quadrupolar扩展中,但可以通过MQMAS(多量子魔角纺纱)光谱来表征。我们在2D DQ-SQ(双量子单量子)和MQMAS光谱中审查NMR线路接收分析,以提供更多通用线拔落分析的指南。此外,讨论了提高Quadrupolar核的光谱分辨率和灵敏度的方法,包括NMR脉冲技术和高磁场的应用。还讨论了磁场强度的作用及其对确定最佳NMR方法的对疾病表征的最佳NMR方法的影响。

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