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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Sensitivity enhancement by chromatographic peak concentration with ultra-high performance liquid chromatography-nuclear magnetic resonance spectroscopy for minor impurity analysis
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Sensitivity enhancement by chromatographic peak concentration with ultra-high performance liquid chromatography-nuclear magnetic resonance spectroscopy for minor impurity analysis

机译:用超高效液相色谱 - 核磁共振谱进行色谱峰浓度的敏感性增强,进行少量杂质分析

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High performance liquid chromatography can be coupled with nuclear magnetic resonance (NMR) spectroscopy to give a powerful analytical method known as liquid chromatography-nuclear magnetic resonance (LC-NMR) spectroscopy, which can be used to determine the chemical structures of the components of complex mixtures. However, intrinsic limitations in the sensitivity of NMR spectroscopy have restricted the scope of this procedure, and resolving these limitations remains a critical problem for analysis. In this study, we coupled ultra-high performance liquid chromatography (UHPLC) with NMR to give a simple and versatile analytical method with higher sensitivity than conventional LC-NMR. UHPLC separation enabled the concentration of individual peaks to give a volume similar to that of the NMR flow cell, thereby maximizing the sensitivity to the theoretical upper limit. The UHPLC concentration of compound peaks present at typical impurity levels (5.0-13.1 nmol) in a mixture led to at most three-fold increase in the signal-to-noise ratio compared with LC-NMR. Furthermore, we demonstrated the use of UHPLC-NMR for obtaining structural information of a minor impurity in a reaction mixture in actual laboratory-scale development of a synthetic process. Using UHPLC-NMR, the experimental run times for chromatography and NMR were greatly reduced compared with LC-NMR. UHPLC-NMR successfully overcomes the difficulties associated with analyses of minor components in a complex mixture by LC-NMR, Which are problematic even when an ultra-high field magnet and cryogenic probe are used. (C) 2017 Elsevier B.V. All rights reserved.
机译:高效液相色谱可以与核磁共振(NMR)光谱偶联,得到一种强大的分析方法,称为液相色谱 - 核磁共振(LC-NMR)光谱,可用于确定复合物组分的化学结构混合。然而,NMR光谱敏感性的内在限制限制了该程序的范围,解决这些限制仍然是分析的关键问题。在本研究中,我们偶联了具有NMR的超高效液相色谱(UHPLC),得到了比常规LC-NMR更高灵敏度的简单且通用的分析方法。 UHPLC分离使得单个峰的浓度使得给出类似于NMR流动单元的体积,从而最大化对理论上限的敏感性。与LC-NMR相比,混合物中典型杂质水平(5.0-13.1nmol)存在于混合物中的典型杂质水平(5.0-13.1nmol)的化合物峰的UHPLC浓度导致最多三倍的信噪比增加。此外,我们证明了使用UHPLC-NMR在合成方法的实际实验室规模开发中获得反应混合物中较小杂质的结构信息。使用UHPLC-NMR,与LC-NMR相比,色谱法和NMR的实验研发时间大大降低。 UHPLC-NMR成功地克服了通过LC-NMR的复杂混合物中次要组分分析的困难,即使使用超高场磁铁和低温探针,也存在问题。 (c)2017年Elsevier B.V.保留所有权利。

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