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首页> 外文期刊>Organic & biomolecular chemistry >Direct catalytic asymmetric synthesis of highly functionalized tetronic acids/tetrahydro-isobenzofuran-1,5-diones via combination of cascade three-component reductive alkylations and Michael-aldol reactions
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Direct catalytic asymmetric synthesis of highly functionalized tetronic acids/tetrahydro-isobenzofuran-1,5-diones via combination of cascade three-component reductive alkylations and Michael-aldol reactions

机译:通过级联三组分还原烷基化反应和迈克尔-奥尔多反应的直接催化不对称合成高度官能化的四氢电子酸/四氢-异苯并呋喃-1,5-二酮

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摘要

A practical and sustainable chemical process for the synthesis of highly substituted tetrahydro-isobenzofuran-l,5-diones was achieved for the first time through asymmetric cascade Michael-aldol reaction of 4-hydroxy-3-alkyl-5H-furan-2-ones with alkyl vinyl ketones in the presence of a catalytic amount of L-proline or 9-amino-9-deoxyepiquinine/TCA. In this article, we discovered for the first time the asymmetric synthesis of privileged bicyclic lactones through kinetic resolution and show the synthetic application to Pharmaceuticals and natural products synthesis.
机译:通过4-羟基-3-烷基-5H-呋喃-2-酮的不对称级联迈克尔-醛醇缩合反应,首次实现了一种实用且可持续的化学方法,用于合成高度取代的四氢-异苯并呋喃-1,5-二酮在催化量的L-脯氨酸或9-氨基-9-脱氧表醌/ TCA的存在下与烷基乙烯基酮反应。在本文中,我们首次通过动力学拆分发现了特权双环内酯的不对称合成,并展示了其在药物和天然产物合成中的合成应用。

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