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首页> 外文期刊>RSC Advances >Design and application of the recyclable poly (L-proline-co-piperidine) catalyst for the synthesis of mesityl oxide from acetone
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Design and application of the recyclable poly (L-proline-co-piperidine) catalyst for the synthesis of mesityl oxide from acetone

机译:可再生聚丙酮催化L-脯氨酸-共-哌啶催化剂的设计与应用

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摘要

Unexpectedly, L-proline/piperidine was found to be a better recyclable catalyst system than L-proline or piperidine alone in the condensation of acetone to prepare mesityl oxide (MO), an important intermediate in the chemical industry. Binding the catalyst system onto polymer resin enhanced the MO selectivity and reduced the catalyst loss. The mechanism of the bi-component catalyst system was also studied through control reactions, as well as by dynamic calculations. The MO selectivity could reach 74.4% and its isolated yield could reach 73.9%, based on the consumed acetone. Although the result does not immediately meet the requirement of industrial production, this study provides a novel organocatalyst system, which might offer a potential alternative to traditional inorganic catalysts that can be used under mild and neutral conditions.
机译:出乎意料的是,在丙酮的缩合反应中,L-脯氨酸/哌啶比单独使用L-脯氨酸或哌啶是一种更好的可回收催化剂体系,可制备化学工业中的重要中间体异丁烯二氧化物(MO)。将催化剂体系结合到聚合物树脂上可以提高MO的选择性并减少催化剂的损失。还通过控制反应以及动态计算研究了双组分催化剂体系的机理。基于消耗的丙酮,MO的选择性可以达到74.4%,其分离产率可以达到73.9%。尽管该结果不能立即满足工业生产的要求,但本研究提供了一种新型的有机催化剂体系,它可能为可在温和和中性条件下使用的传统无机催化剂提供潜在的替代方法。

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