以碱性离子液体[BMIM][OH]为多相催化剂介导无溶剂Stobbe缩合,应用磨石技术合成新型β-芳基烯-β-苯甲酰丙酸衍生物

T. Lambat, S. Deo
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引用次数: 8

摘要

摘要碱性离子液体1-丁基-3-甲基咪唑氢氧化物[BMIM][OH]在无溶剂条件下能有效催化Stobbe缩合反应。广泛的芳香醛与丙酸甲酯-β-苯甲酰发生缩合。反应在室温下进行,速度非常快(10分钟)。然而,该方法最关键的特点是无溶剂方法和应用磨石技术进行缩合,这通常是任何其他传统试剂无法实现的,并且在文献中没有充分解决,提供了一个通用和方便的程序。[BMIM][OH]在有机合成中的潜在应用正在迅速增加,因为它具有高收率(80%-92%)、最短的反应时间、反应简单和低成本的化学品。所有新的β-芳烯基-β-苯甲酰丙酸衍生物均通过IR、1H NMR和质谱进行了表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Basic ionic liquid [BMIM][OH] as heterogeneous catalyst mediated solvent-free Stobbe condensation applying grindstone technique for the synthesis of novel β-arylidene-β-benzoylpropionic acid derivatives
ABSTRACTThe basic ionic liquid 1-butyl-3-methylimidazolium hydroxide, i.e. [BMIM][OH], proficiently catalyzed Stobbe condensation in solvent-free condition. An extensive range of aromatic aldehydes simply undergo condensations with methyl-β-benzoyl propionate. The reactions proceed at room temperature and are very fast (10 min). However, the most crucial feature of this methodology is the solvent-free approach and applying grindstone technique for condensation, which is generally not possible by any other conventional reagents and was not addressed adequately in literature providing a general and convenient procedure. The potential application of [BMIM][OH] in organic synthesis is increasing rapidly due to its high yields of the desired products (80%–92%), minimal reaction time, reaction simplicity, and low-cost chemicals. All novel compounds of β-arylidene-β-benzoylpropionic acid derivatives were characterized by IR, 1H NMR, and mass spectra.
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