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Multidimensional Dipolar Exchange-Assisted Recoupling Measurements in Solid-State NMR

机译:固态NMR中的多维偶极交换辅助重耦合测量

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摘要

A series of uni- and multidimensional variants of the dipolar exchange-assisted recoupling (DEAR) NMR experiment is described and applied to determinations of ~(13)C-~(14)N dipolar local field spectra in amino acids and dipeptides. The DEAR protocol recouples nearby nuclei by relying on differences in their relative rates of longitudinal relaxation, and has the potential to give quantitative geometric results without requiring radiofrequency pulsing on both members of a coupled spin pair. One- and two-dimensional variants of this recoupling strategy on generic I-S pairs are discussed, and measurements of ~(13)C-~(14)N distances and 2D local field experiments sensitive to the relative orientation of CN vectors with respect to the ~(13)C shielding tensor are presented. Since these measurements did not involve pulsing on the broad nitrogen resonance, their results were independent of the quadrupolar parameters of this nucleus. High-resolution 3D NMR versions of the 2D experiments were also implemented in order to separate their resulting local field patterns according to the isotropic shifts of inequivalent ~(13)C sites. These high-resolution 3D acquisitions involved collecting a series of 2D DEAR NMR data sets on rotating samples as a function of spinning angle, and then subjecting the resulting data to a processing akin to that involved in variable-angle correlation NMR. Once successfully tested on L-alanine this experiment was applied to the analysis of a series of dipeptides, allowing us to extract separate local field ~(13)C-~(14)N spectra from this type of multisite systems.
机译:描述了一系列偶极交换辅助重耦合(DEAR)NMR实验的一维和多维变体,并将其应用于测定氨基酸和二肽中〜(13)C-〜(14)N偶极局部场谱。 DEAR协议依靠它们相对的纵向弛豫速率的差异重新耦合附近的原子核,并且有可能给出定量的几何结果,而无需在耦合的自旋对的两个成员上施加射频脉冲。讨论了在通用IS对上这种重新耦合策略的一维和二维变体,并且测量了〜(13)C-〜(14)N距离和对CN向量相对于方向的敏感的二维局部场实验。给出了〜(13)C屏蔽张量。由于这些测量不涉及对广泛氮共振的脉冲,因此其结果与该核的四极参数无关。还执行了2D实验的高分辨率3D NMR版本,以便根据不等价的〜(13)C位点的各向同性位移来分离其所得的局部场模式。这些高分辨率3D采集涉及在旋转样本上收集一系列2D DEAR NMR数据集,这些数据集是旋转角的函数,然后对所得数据进行类似于变角相关NMR的处理。一旦成功地在L-丙氨酸上进行了测试,该实验就可用于分析一系列二肽,从而使我们能够从此类多站点系统中提取单独的局域〜(13)C-〜(14)N光谱。

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