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Coupling biocatalysis with high-energy flow reactions for the synthesis of carbamates and β-amino acid derivatives

机译:用高能流反应偶联生物催物分析用于合成氨基甲酸酯和β-氨基酸衍生物

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摘要

A continuous flow process is presented that couples a Curtius rearrangement step with a biocatalytic impurity tagging strategy to produce a series of valuable Cbz-carbamate products. Immobilized CALB was exploited as a robust hydrolase to transform residual benzyl alcohol into easily separable benzyl butyrate. The resulting telescoped flow process was effectively applied across a series of acid substrates rendering the desired carbamate structures in high yield and purity. The derivatization of these products via complementary flow-based Michael addition reactions furthermore demonstrated the creation of β-amino acid species. This strategy thus highlights the applicability of this work towards the creation of important chemical building blocks for the pharmaceutical and speciality chemical industries.
机译:提出了一种连续的流动过程,其与生物催化杂质标签策略相结合,以产生一系列有价值的CBZ-氨基甲酸酯产品。将固定化的CALB作为一种稳健的水解酶被利用,以将残留的苄醇转化成容易分离的苄基丁酸盐。得到的伸缩式流动过程有效地施加在一系列酸基材上,以高产和纯度呈现所需的氨基甲酸酯结构。通过互补的流动的迈克尔添加反应,这些产品的衍生化进一步证明了β-氨基酸物种的产生。因此,该策略强调了这项工作对制药和特种化学工业的重要化学积木的适用性。

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