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A comparison of NCO and NCA transfer methods for biological solid-state NMR spectroscopy

机译:生物固体NMR光谱的NCO和NCA转移方法的比较

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摘要

Three different techniques (adiabatic passage Hartman-Hahn cross-polarization, optimal control designed pulses, and EXPORT) are compared for transferring ~(15)N magnetization to ~(13)C in solid-state NMR experiments under magic-angle-spinning conditions. We demonstrate that, in comparison to adiabatic passage Hartman-Hahn cross-polarization, optimal control transfer pulses achieve similar or better transfer efficiencies for uniformly- ~(13)C, ~(15)N labeled samples and are generally superior for samples with non-uniform labeling schemes (such as 1,3- and 2- ~(13)C glycerol labeling). In addition, the optimal control pulses typically use substantially lower average RF field strengths and are more robust with respect to experimental variation and RF inhomogeneity. Consequently, they are better suited for demanding samples.
机译:比较了三种不同的技术(绝热通道Hartman-Hahn交叉极化,最佳控制设计的脉冲和EXPORT)在魔术角旋转条件下在固态NMR实验中将〜(15)N磁化强度转移到〜(13)C的情况。 。我们证明,与绝热通道的Hartman-Hahn交叉极化相比,最佳的控制转移脉冲对均匀~~(13)C,〜(15)N标记的样品实现相似或更好的转移效率,并且通常对于不包含-C的样品具有更好的转移效率。 -统一的标记方案(例如1,3-和2-〜(13)C甘油标记)。另外,最佳控制脉冲通常使用实质上较低的平均RF场强,并且相对于实验变化和RF不均匀性更鲁棒。因此,它们更适合要求苛刻的样品。

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