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首页> 外文期刊>Tetrahedron >Organocatalytic desymmetrization of cyclic meso-anhydrides through enantioselective alcoholysis with functionalized primary nitroallylic alcohols
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Organocatalytic desymmetrization of cyclic meso-anhydrides through enantioselective alcoholysis with functionalized primary nitroallylic alcohols

机译:通过功能化伯硝基烯丙醇的对映选择性醇解,对环状介孔酸酐进行有机催化去对称化

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摘要

The direct organocatalytic desymmetrization of cyclic meso-anhydrides was achieved by alcoholysis with nitroallylic alcohols. The reaction between primary nitroallylic alcohols and cyclic meso-anhydrides catalyzed by cinchonidine derived thiourea organocatalyst II (10 mol %) proceeded smoothly. The corresponding hemiesters were obtained in high chemical yields with high to excellent levels of stereoselectivity (up to 90% yield and 99% ee). On the other hand, the reversal of enantioselectivity was observed when an amino cinchonidine derivative (III) was used as the organocatalyst under the similar reaction conditions. This demonstrated an example of activation of the nucelophilic component in the desymmetrization of cyclic meso-anhydrides.
机译:环状内消旋酸酐的直接有机催化去对称化是通过使用硝基烯丙醇进行醇解而实现的。辛可尼定衍生的硫脲有机催化剂II(10 mol%)催化的伯硝基烯丙醇与环状内消旋酸酐的反应顺利进行。相应的半酯以高化学产率获得,具有高至极好的立体选择性水平(高达90%的收率和99%的ee)。另一方面,当在相似的反应条件下将氨基辛可尼定衍生物(III)用作有机催化剂时,观察到对映选择性的逆转。这证明了在环状介孔酸酐的脱对称化中亲核组分活化的例子。

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