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首页> 外文期刊>Analytical and Bioanalytical Chemistry >Impact of the deuterium isotope effect on the accuracy of 13C NMR measurements of site-specific isotope ratios at natural abundance in glucose
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Impact of the deuterium isotope effect on the accuracy of 13C NMR measurements of site-specific isotope ratios at natural abundance in glucose

机译:氘同位素效应对葡萄糖中自然丰度下 13 C现场特定同位素比值的 13 C NMR测量准确性的影响

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摘要

The application of isotope ratio methods in authenticity and traceability relies on the accuracy and robustness of the methodology employed. An unexpected source of error has now been identified, which can introduce major and variable inaccuracies into the determination of site-specific isotope ratio measurement by quantitative 13C NMR spectrometry if not correctly controlled. This is the isotope chemical shift effect, which comes into play when hydrogen atoms in the target molecule enter into exchange with deuterated water present at trace levels in the deuterated solvent used as the frequency lock. Even at a level of contamination as low as 0.02%, an error of 5‰ can be introduced, fivefold the required accuracy of 1‰. How to avoid this source of error is discussed.
机译:同位素比率方法在真实性和可追溯性中的应用取决于所采用方法的准确性和鲁棒性。现在已经发现了一个意料之外的错误来源,如果控制不当,可能会通过定量 13 C NMR光谱法在确定特定同位素同位素比的测量中引入主要和可变的误差。这是同位素化学位移效应,当目标分子中的氢原子与用作锁频器的氘代溶剂中的痕量水平的氘代水交换时起作用。即使在低至0.02%的污染水平下,也可以引入5‰的误差,是要求精度1‰的五倍。讨论了如何避免这种错误源。

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