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首页> 外文期刊>Synthetic Communications >Simple, efficient, and green method for synthesis of trisubstituted electrophilic alkenes using lipase as a biocatalyst
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Simple, efficient, and green method for synthesis of trisubstituted electrophilic alkenes using lipase as a biocatalyst

机译:一种简单,高效,绿色的方法,以脂肪酶为生物催化剂合成三取代的亲电烯烃

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摘要

A simple and efficient Knoevenagel condensation method for the synthesis of trisubstituted electrophilic alkenes was developed using lipase as a biocatalyst. Knoevenagel condensation was performed using the conventional method and using lipases (Aspergillus oryzae or Rhizopus oryzae) as biocatalysts, and reaction time, reaction temperature, yield, and recyclability were compared. Using a lipase as a biocatalyst eliminated the need for bases such as piperidine and pyridine. A wide range of aromatic aldehydes and ketones readily undergo condensation with active methylene compounds. The workup procedure is also very simple, and yields of the reactions are in the range of 75%to 95%. Both the biocatalysts were effectively recycled four times with no major decrease in the yield of product. The remarkable catalytic activity and reusability of lipase widens its applicability in Knoevenagel condensation with good to excellent yields for synthesis of trisubstituted electrophilic alkenes.
机译:利用脂肪酶作为生物催化剂,开发了一种简单高效的Knoevenagel缩合方法,用于合成三取代的亲电烯烃。使用常规方法并使用脂肪酶(米曲霉或米根霉)作为生物催化剂进行Knoevenagel缩合,并比较了反应时间,反应温度,产率和可回收性。使用脂肪酶作为生物催化剂消除了对诸如哌啶和吡啶之类的碱的需要。各种芳香醛和酮容易与活性亚甲基化合物缩合。后处理步骤也非常简单,并且反应的产率在75%至95%的范围内。两种生物催化剂均有效地循环了四次,产物的收率没有大的下降。脂肪酶的显着催化活性和可重复使用性拓宽了其在Knoevenagel缩合反应中的适用性,并具有良好的收率,可用于合成三取代的亲电烯烃。

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