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首页> 外文期刊>Journal of the Chemical Society, Perkin Transactions 1 >Stereocontrolled synthesis of polyhydroxylated hexahydro-1H-cyclopentcisoxazoles by intramolecular oxime olefin cycloadditions: an approach to aminocyclopentitols
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Stereocontrolled synthesis of polyhydroxylated hexahydro-1H-cyclopentcisoxazoles by intramolecular oxime olefin cycloadditions: an approach to aminocyclopentitols

机译:分子内肟烯烃环加成法合成多羟基化六氢-1H-环戊并c异噁唑的立体控制:氨基环戊醇的处理方法

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摘要

A series of alk-5-enyl aldehydes derived from various carbohydrates (D-glucose, D-mannose, D-galactose, D-glucal) can be transformed into the corresponding oximes. Thermolysis of these oximes results in the isolation of hexahydro-1H-cyclopentcisoxazoles in good yields via intramolecular oxime olefin cycloadditions. Modest to excellent levels of diastereocontrol are observed in these cycloaddition reactions depending on the precise nature of the oxime precursor. In the best case, D-glucose-derived oxime 4 produces hexahydro-1H-cyclopentcisoxazole 5 as the sole product in quantitative yield. When the oxime possesses a substituent (OBn or OBz) adjacent to the oxime carbon atom, it is observed that reactions show a preference to produce the diastereomeric cycloadduct in which this substituent is located in an exo orientation relative to the newly formed hexahydro-1H-cyclopentcisoxazole ring system. The role of the solvent polarity on the diastereochemical outcome of these reactions is briefly discussed. Unsuccessful efforts to extend this chemistry to oximes derived from alk-4-enyl aldehydes are also presented. Finally, it is demonstrated that the hexahydro-1H-cyclopentcisoxazoles can be transformed into stereochemically defined aminocyclopentitols.
机译:由各种碳水化合物(D-葡萄糖、D-甘露糖、D-半乳糖、D-葡萄糖)衍生的一系列烷-5-烯基醛可以转化为相应的肟。这些肟的热解导致六氢-1H-环戊并[c]异噁唑的分离,通过分子内肟烯烃环加成以良好的收率。在这些环加成反应中观察到适度到极好的非对映控制水平,具体取决于肟前体的精确性质。在最好的情况下,D-葡萄糖衍生的肟 4 产生六氢-1H-环戊并[c]异噁唑 5 作为定量产率的唯一产物。当肟具有与肟碳原子相邻的取代基(OBn或OBz)时,观察到反应显示出产生非对映异构体环加合物的偏好,其中该取代基相对于新形成的六氢-1H-环戊并[c]异噁唑环体系位于外取向。简要讨论了溶剂极性对这些反应的非对映化学结果的作用。还介绍了将这种化学扩展到由alk-4-烯基醛衍生的肟的努力,但没有成功。最后,证明六氢-1H-环戊并[c]异噁唑可以转化为立体化学定义的氨基环戊醇。

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