首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >A method for rapid reaction optimisation in continuous-flow microfluidic reactors using online Raman spectroscopic detection
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A method for rapid reaction optimisation in continuous-flow microfluidic reactors using online Raman spectroscopic detection

机译:在线在线拉曼光谱检测在连续流微流化反应器中快速优化反应的方法

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摘要

An extremely rapid tool for continuous flow synthetic process optimisation is described. A microfluidic reaction system operating in continuous flow is used in conjunction with confocal Raman microscopy to afford rapid molecule synthesis and product quantitation. Accordingly, the approach allows for rapid reaction optimisation within a continuous flow system. Specifically, the catalytic oxidation of isopropyl alcohol ( IPA) to acetone using tetra-N-propylammonium perruthanate (TPAP)/N-methylmorpholine N-oxide (NMO) in a radial interdigitated micromixer is studied as a model reaction system. The composition of the reaction effluent can be determined with great facility and information relating to catalyst/co-oxidant ratios, catalyst turnovers and reaction endpoints extracted. Specifically, variation of catalyst and co-oxidant volumetric flow rates between 0 and 50 muL min(-1) is used to vary reactant concentrations, define reaction residence times and control product conversions between 0 and 100%. The rapid nature of the system allows chemical information to be gathered and utilised on a sub-minute timescale.
机译:描述了一种用于连续流合成过程优化的极其快速的工具。以连续流动运行的微流体反应系统与共焦拉曼显微镜结合使用,可提供快速的分子合成和产物定量。因此,该方法允许连续流系统内的快速反应优化。具体地,研究了在径向叉指式微型混合器中使用过磷酸四正丙铵/正丁基铵(TPAP)/ N-甲基吗啉N-氧化物(NMO)将异丙醇(IPA)催化氧化为丙酮的方法。可以非常方便地确定反应流出物的组成,并且可以确定有关催化剂/助氧化剂比例,催化剂周转率和提取的反应终点的信息。具体而言,使用催化剂和助氧化剂的体积流量在0至50μLmin(-1)之间变化来改变反应物浓度,定义反应停留时间并控制产品转化率在0至100%之间。该系统的快速特性允许在不到一分钟的时间范围内收集和利用化学信息。

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