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首页> 外文期刊>Chirality: The pharmacological, biological, and chemical consequences of molecular asymmetry >Chirality and the Origin of Life: In Situ Enantiomeric Separation for Future Space Missions
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Chirality and the Origin of Life: In Situ Enantiomeric Separation for Future Space Missions

机译:手性与生命起源:未来太空任务的原位对映体分离

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Two different methods of derivatization were studied in order to select and optimize one for the in situ enantiomeric separation of amino acids present in Martian samples. The method, using DMF-DMA [N,N-dimethylformamide dimethyl acetal], is simple and easily automated. However, by-products of the reaction interfere in the gas chromatograms and mass spectrometry detection is needed for in situ analysis. The chloroformate derivatization has several advantages, including the use of achiral robust capillary column, room temperature reaction, and short analysis. The choice of the definitive derivatization method will depend on the energy and time devoted to the analysis of amino acids in the next Mars exploration missions.
机译:为了选择和优化一种火星样品中存在的氨基酸的原位对映体分离方法,研究了两种不同的衍生方法。使用DMF-DMA [N,N-二甲基甲酰胺二甲基乙缩醛]的方法简便易行。但是,反应的副产物会干扰气相色谱,因此需要进行质谱检测以进行原位分析。氯甲酸酯衍生化具有多个优点,包括使用非手性强固性毛细管柱,室温反应和分析时间短。最终衍生化方法的选择将取决于下一次火星探测任务中用于分析氨基酸的能量和时间。

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