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首页> 外文期刊>Chemistry: A European journal >The combined role of catalysis and solvent effects on the biginelli reaction: Improving efficiency and sustainability
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The combined role of catalysis and solvent effects on the biginelli reaction: Improving efficiency and sustainability

机译:催化和溶剂作用对biginelli反应的综合作用:提高效率和可持续性

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摘要

The traditional Biginelli reaction is a three-component condensation between urea, benzaldehyde and an acetoacetate ester to give a dihydropyrimidinone. An investigation into catalytic and solvent effects has returned the conclusion that the diketo- enol tautomerisation equilibrium of the dicarbonyl reactant dictates the yield of the reaction. Whereas the solvent is responsible for the tautomerisation equilibrium position, the catalyst only serves to eliminate kinetic control from the reaction. Generally, to preserve reaction efficiency and improve sustain- ability, bio-derivable p-cymene was found to be a useful solvent. The metal-enolate intermediate that results from the application of a Lewis acidic catalyst often cited as promoting the reaction appears to hinder the reaction. In this instance, a Bronsted acidic solvent can be used to return greater reactivity to the dicarbonyl reagent.
机译:传统的Biginelli反应是尿素,苯甲醛和乙酰乙酸酯之间的三组分缩合反应,生成二氢嘧啶酮。对催化和溶剂作用的研究得出的结论是,二羰基反应物的二酮-烯醇互变异构平衡决定了反应的产率。尽管溶剂负责互变异构平衡位置,但是催化剂仅用于消除反应的动力学控制。通常,为了保持反应效率并提高可持续性,人们发现生物衍生的对-甲基异丙基苯是有用的溶剂。由于通常被称为促进反应的路易斯酸性催化剂的应用而产生的金属-烯醇中间体似乎阻碍了反应。在这种情况下,可以使用布朗斯台德酸性溶剂使二羰基试剂具有更大的反应性。

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