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Accurate quantitative C-13 NMR spectroscopy: Repeatability over time of site-specific C-13 isotope ratio determination

机译:准确的定量C-13 NMR光谱:特定地点C-13同位素比率测定随时间的可重复性

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摘要

The stability over time (repeatability) for the determination of site-specific C-13/C-12 ratios at natural abundance by quantitative C-13 NMR spectroscopy has been tested on three probes: enriched bilabeled [1,2-C-13(2)]ethanol; ethanol at natural abundance; and vanillin at natural abundance. It is shown in all three cases that the standard deviation for a series of measurements taken every 2-3 months over periods between 9 and 13 months is equal to or smaller than the standard deviation calculated from 5-10 replicate measurements made on a single sample. The precision which can be achieved using the present analytical 13C NMR protocol is higher than the prerequisite value of 1-2 parts per thousand for the determination of site-specific C-13/C-12 ratios at natural abundance (C-13-SNIF-NMR). Hence, this technique permits the discrimination of very small variations in C-13/C-12 ratios between carbon positions, as found in biogenic natural products. This observed stability over time in C-13 NMR spectroscopy indicates that further improvements in precision will depend primarily on improved signal-to-noise ratio.
机译:在三种探针上测试了通过定量C-13 NMR光谱法测定自然丰度时特定位置C-13 / C-12比值随时间的稳定性(重复性):富集的双标记[1,2-C-13( 2)]乙醇;自然丰度的乙醇;和香兰素自然丰富。在所有这三种情况下,表明在9到13个月内每2-3个月进行的一系列测量的标准偏差等于或小于对单个样品进行5-10次重复测量得出的标准偏差。使用本分析13C NMR协议可以达到的精度高于在自然丰度下确定位点特定C-13 / C-12比值的前提值1-2千分之一(C-13-SNIF -NMR)。因此,如在生物天然产物中发现的那样,该技术允许区分碳位置之间的C-13 / C-12比值非常小的变化。在C-13 NMR光谱中观察到的随时间变化的稳定性表明,精度的进一步提高将主要取决于信噪比的提高。

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