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C Dynamic Nuclear Polarization: an Alternative Detector for Recycled-Flow NMR Experiments

机译:C动态核极化:循环流NMR实验的替代检测器

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摘要

Static NMR experiments on insensitive nuclei (e.g., ↑(13)C) have been generally difficult because of low magnetogyric ratios and/or poor natural abundance, even at the highest magnetic fields available. One method of overcoming these sensitivity limitations is dynamic nuclear polarization (DNP), which can be utilized to enhance NMR signals relative to those obtained with static NMR detection. In study, we report a recycled-flow DNP apparatus capable of monitoring 13C scalar-dominated enhance-merits 1-2 orders of magnitude greater than those obtainable using the conventional recycled-flow ↑(13)c NMR experiment. Specifically, a mixture of benzene and several chlorocarbons were continuously "recycled" through a ↑(13)C DNP spectrometer. Results indicate successful detection with the ↑(13)C DNP approach in scalar-dominated cases, where analytes could not be observed with conventional static or flow NMR detection in a reasonable length of time.
机译:由于磁电比低和/或自然丰度低,即使在可用的最高磁场下,对不敏感核(例如↑(13)C)的静态NMR实验通常也很困难。克服这些灵敏度限制的一种方法是动态核极化(DNP),相对于通过静态NMR检测获得的信号,该方法可用于增强NMR信号。在研究中,我们报告了一种循环流DNP装置,该装置能够监测13C标量主导的增强性能,比使用常规循环流↑(13)c NMR实验可获得的增强性能高1-2个数量级。具体而言,通过↑(13)C DNP光谱仪连续“回收”苯和几种氯碳的混合物。结果表明,在标量占多数的情况下,使用↑(13)C DNP方法可以成功进行检测,在常规时间内,常规静态或流NMR检测无法观察到分析物。

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