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Validating heteronuclear 2D quantitative NMR

机译:验证异核2D定量NMR

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NMR is used extensively for accurate quantitation of simple analytes and can, with careful application, generate SI traceable measurements. Its application for more complex analytes is limited due to spectrum complexity and signal overlap. Due to its higher resolving power, 2D qNMR is starting to emerge as a viable quantitative technique for such complex analytes but brings with it a variety of sources of experimental bias not present in the simple 1D qNMR method. In order to claim SI traceability of 2D NMR techniques, these biases and additional sources of measurement uncertainty need to be quantified. This work evaluates the application of HSQC methods to perform quantitative analysis with minimal bias and using an internally standardised glucose assay as an example, to assess the variation between experimental and theoretical biases and discuss approaches to determine the measurement uncertainty with a minimum of method validation...
机译:NMR被广泛用于简单分析物的准确定量,并且在仔细应用后可以生成SI可溯源的测量值。由于光谱复杂度和信号重叠,它在更复杂的分析物中的应用受到限制。由于其较高的分辨能力,二维qNMR已开始作为一种可行的定量技术用于此类复杂的分析物,但带来了简单的一维qNMR方法中不存在的各种实验偏差来源。为了声明2D NMR技术的SI可追溯性,需要对这些偏差和测量不确定度的其他来源进行量化。这项工作评估了HSQC方法在最小偏差下进行定量分析的应用,并以内部标准化的葡萄糖测定为例,评估了实验偏差和理论偏差之间的差异,并讨论了以最少的方法验证来确定测量不确定度的方法。 ..

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