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Reaction monitoring of aliphatic amines in supercritical carbon dioxide by proton nuclear magnetic resonance spectroscopy and implications for supercritical fluid chromatography

机译:质子核磁共振波谱法监测超临界二氧化碳中脂肪胺的反应及其对超临界流体色谱的影响

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In the recent years, it has repeatedly been stated that amines react with CO2 and can therefore not be chromatographed under supercritical conditions with CO2. The aim of the present work is to elucidate the structural requirements and conditions that can lead to the reaction of an amine analyte with CO2 and, if this occurs, the structure of the formed product. The use of on-line nuclear magnetic resonance (NMR) spectroscopy with a flow probe for supercritical fluid chromatography (SFC) enables the investigation of these unstable analytes in supercritical mediums. Several alkyl-substituted secondary benzylamines and some primary aromatic amines were dissolved in supercritical CO2 and investigated by employing on-line SFC-H-1 NMR spectroscopy. It was found that the condition of carbamic acid formation depends on the steric properties of the substituents of the amine. A 2-isopropylamino alcohol compound, metoprolol, was also investigated with the setup. No carbamic acid could be detected with the present conditions. [References: 21]
机译:近年来,一再指出胺会与CO2反应,因此无法在超临界条件下用CO2进行色谱分离。本工作的目的是阐明结构要求和条件,这些条件和条件可能导致胺分析物与CO2发生反应,如果发生这种情况,则会导致所形成产品的结构发生变化。将在线核磁共振(NMR)光谱与用于超临界流体色谱(SFC)的流量探针结合使用,可以研究超临界介质中的这些不稳定分析物。将几种烷基取代的仲苄胺和一些伯芳族胺溶解在超临界CO2中,并通过在线SFC-H-1 NMR光谱进行研究。发现氨基甲酸的形成条件取决于胺的取代基的空间性质。该装置还研究了2-异丙基氨基醇化合物美托洛尔。在当前条件下无法检测到氨基甲酸。 [参考:21]

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