Dipartimento di Scienze Chimiche e Farmaceutiche, Laboratorio di Chimica Organica, Università di Ferrara, Via L. Borsari 46, 44121 Ferrara, Italy.
Chemistry. 2013 Jun 10;19(24):7802-8. doi: 10.1002/chem.201300181. Epub 2013 Apr 15.
The heterogeneous proline-catalyzed aldol reaction was investigated under continuous-flow conditions by means of a packed-bed microreactor. Reaction-progress kinetic analysis (RPKA) was used in combination with nonlinear chromatography for the interpretation, under synthetically relevant conditions, of important mechanistic aspects of the heterogeneous catalytic process at a molecular level. The information gathered by RPKA and nonlinear chromatography proved to be highly complementary and allowed for the assessment of optimal operating variables. In particular, the determination of the rate-determining step was pivotal for optimizing the feed composition. On the other hand, the competitive product inhibition was responsible for the unexpected decrease in the reaction yield following an apparently obvious variation in the feed composition. The study was facilitated by a suitable 2D instrumental arrangement for simultaneous flow reaction and online flow-injection analysis.
在连续流条件下,通过填充床微反应器研究了杂化脯氨酸催化的 aldol 反应。反应进度动力学分析(RPKA)与非线性色谱相结合,用于在分子水平上解释在合成相关条件下异相催化过程的重要机理方面。通过 RPKA 和非线性色谱收集的信息具有很强的互补性,并允许评估最佳操作变量。特别是,确定速控步骤对于优化进料组成至关重要。另一方面,产物的竞争抑制作用导致反应产率在进料组成明显变化后下降,这令人意外。通过适合的二维仪器布置,实现了同时进行流动反应和在线流动注射分析,这有助于该研究。