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Substrate inhibition in the heterogeneous catalyzed aldol condensation: A mechanistic study of supported organocatalysts

机译:异质催化醛醇缩合中的底物抑制:负载型有机催化剂的机理研究

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摘要

In this study, we demonstrate how materials science can be combined with the established methods of organic chemistry to find mechanistic bottlenecks and redesign heterogeneous catalysts for improved performance. By using solid-state NMR, infrared spectroscopy, surface and kinetic analysis, we prove the existence of a substrate inhibition in the aldol condensation catalyzed by heterogeneous amines. We show that modifying the structure of the supported amines according to the proposed mechanism dramatically enhances the activity of the heterogeneous catalyst. We also provide evidence that the reaction benefits significantly from the surface chemistry of the silica support, which plays the role of a co-catalyst, giving activities up to two orders of magnitude larger than those of homogeneous amines. This study confirms that the optimization of a heterogeneous catalyst depends as much on obtaining organic mechanistic information as it does on controlling the structure of the support.
机译:在这项研究中,我们演示了如何将材料科学与已建立的有机化学方法相结合,以发现机械瓶颈,并重新设计非均相催化剂以提高性能。通过使用固体核磁共振,红外光谱,表面和动力学分析,我们证明了异质胺催化的羟醛缩合中底物抑制的存在。我们表明,根据提出的机制对负载胺的结构进行改性,可以显着提高非均相催化剂的活性。我们还提供了证据,表明该反应显着受益于二氧化硅载体的表面化学作用,后者起着助催化剂的作用,其活性比均相胺高出两个数量级。该研究证实,非均相催化剂的优化与控制载体结构一样,很大程度上取决于获得有机力学信息。

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