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利用不对称有机催化反应,通过迈克尔-aldol-笑脸重排序列合成多功能光学活性双环结构。

An unexpected Michael-aldol-smiles rearrangement sequence for the synthesis of versatile optically active bicyclic structures by using asymmetric organocatalysis.

机构信息

Center for Catalysis, Department of Chemistry, Aarhus University, 8000 Aarhus C, Denmark.

出版信息

Chemistry. 2010 Apr 12;16(14):4337-46. doi: 10.1002/chem.200903274.

Abstract

A facile and simple organocatalytic procedure to generate optically active 6-alkyl- and 6-aryl-substituted bicyclo[2.2.2]oct-5-en-2-ones is presented. The reaction is catalysed by a 9-amino-9-deoxyepiquinine trifluoroacetic acid salt, which activates alpha,beta-unsaturated cyclic ketones for the 1,4-addition of beta-keto benzothiazoyl sulfones in a stereoselective fashion. Subsequent intramolecular aldol reaction and Smiles rearrangement gives rise to important optically active bicycles, which are a common motif in natural products, ligands in asymmetric catalysis and substrates for Cope rearrangements, photochemical reactions, radical cyclisations and metathesis. Different bicyclic structures were obtained by utilisation of various cyclic enones or by performing ring-expanding reactions. Furthermore, two possible mechanistic pathways are outlined and discussed.

摘要

本文报道了一种简便的手性有机催化方法,用于立体选择性地生成光学活性的 6-烷基-和 6-芳基取代的双环[2.2.2]辛-5-烯-2-酮。该反应由 9-氨基-9-去氧表小檗碱三氟乙酸盐催化,该盐活化α,β-不饱和环酮,使β-酮苯并噻唑亚砜进行 1,4-加成,得到具有重要光学活性的双环化合物。随后的分子内羟醛缩合反应和 Smiles 重排得到常见于天然产物、不对称催化配体和 Cope 重排、光化学反应、自由基环化和复分解反应底物的重要光学活性双环化合物。通过利用各种环状烯酮或进行扩环反应,可以得到不同的双环结构。此外,还提出并讨论了两种可能的反应机理。

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