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Heteronuclear Local Field NMR Spectroscopy under Fast Magic-Angle Sample Spinning Conditions

机译:快速魔术角样品旋转条件下的异核局域NMR光谱

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摘要

The acquisition of bidimensional heteronuclear nuclear magnetic resonance local field spectra under moderately fast magicangle spinning (MAS) conditions is discussed. It is shown both experimentally and with the aid of numerical simulations on multispin systems that when sufficiently fast MAS rates are employed, quantitative dipolar sideband patterns from directly bonded spin pairs can be acquired in the absence of ~(1)H-~(1)H multiple-pulse homonuclear decoupling even for "real" organic solids. The MAS speeds involved are well within the range of commercially available systems (10-14 kHz) and provide sidebands with sufficient intensity to enable a reliable quantification of heteronuclear dipolar couplings from methine groups. Simulations and experiments show that useful information can be extracted in this manner even from more tightly coupled-CH_(2)-moieties, although the agreement with the patterns simulated solely on the basis of heteronuclear interactions is not in this case as satisfactory as for methines. Preliminary applications of this simple approach to the analysis of molecular motions in solids are presented; characteristics and potential extensions of the method are also discussed.
机译:讨论了在中等快速魔角旋转(MAS)条件下二维异核核磁共振局部场谱的获取。实验和在多旋转系统上的数值模拟的帮助下表明,当采用足够快的MAS速率时,可以在不存在〜(1)H-〜(1)的情况下获得直接键合自旋对的定量偶极边带模式。 H多脉冲同核去耦,即使对于“真实”有机固体也是如此。涉及的MAS速度很好地处于商用系统的范围内(10-14 kHz),并为边带提供了足够的强度,从而能够可靠地量化次甲基中的异核偶极耦合。模拟和实验表明,即使从更紧密耦合的CH_(2)部分上,也可以这种方式提取有用的信息,尽管在这种情况下,与仅基于异核相互作用模拟的模式的一致性并不如次甲基令人满意。介绍了这种简单方法在固体分子运动分析中的初步应用。还讨论了该方法的特性和潜在的扩展。

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