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 >The generation of concentration gradients using electroosmotic flow in micro reactors allowing stereoselective chemical synthesis
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The generation of concentration gradients using electroosmotic flow in micro reactors allowing stereoselective chemical synthesis

机译:在微型反应器中利用电渗流产生浓度梯度,从而实现立体选择性化学合成

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摘要

The stereoselective control of chemical reactions has been achieved by applying electrical fields in a micro reactor generating controlled concentration gradients of the reagent streams. The chemistry based upon well-established Wittig synthesis was carried out in a micro reactor device fabricated in borosilicate glass using photolithographic and wet etching techniques. The selectivity of the cis (Z) to trans (E) isomeric ratio in the product synthesised was controlled by varying the applied voltages to the reagent reservoirs within the micro reactor. This subsequently altered the relative reagent concentrations within the device resulting in ZIE ratios in the range 0.57—5.21. By comparison, a traditional batch method based on the same reaction length, concentration, solvent and stoichiometry (i.e., 1.0:1.5:1.0 reagent ratios) gave a ZIE in the range 2.8—3.0. However, when the stoichiometric ratios were varied up to ten times as much, the ZIE ratios varied in accordance to the micro reactor i.e., when the aldehyde is in excess, the Z isomer predominates whereas when the aldehyde is in low concentrations, the F isomer is the more favourable form. Thus indicating that localised concentration gradients generated by careful flow control due to the diffusion limited non-turbulent mixing regime within a micro reactor, leads to the observed stereo selectivity for the c~is and trans isomers.
机译:通过在微型反应器中施加电场以产生试剂流的受控浓度梯度,可以实现化学反应的立体选择性控制。基于完善的维蒂希合成的化学反应是在微反应器装置中进行的,该装置使用光刻和湿法蚀刻技术在硼硅酸盐玻璃中制成。通过改变施加到微型反应器内试剂容器的电压来控制合成产物中顺式(Z)对反式(E)异构体比的选择性。随后改变了装置内的相对试剂浓度,导致ZIE比率在0.57至5.21的范围内。相比之下,基于相同的反应长度,浓度,溶剂和化学计量比(即1.0:1.5:1.0试剂比例)的传统分批方法得出的ZIE在2.8-3.0范围内。然而,当化学计量比变化多达十倍时,ZIE比率根据微型反应器而变化,即,当醛过量时,Z异构体占主导,而当醛浓度低时,F异构体是更有利的形式。因此表明,由于在微反应器内由于扩散限制了非湍流混合方式,通过仔细的流量控制而产生的局部浓度梯度导致观察到的对顺式和反式异构体的立体选择性。

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