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Asymmetric total synthesis of (-)-lingzhiol via a Rh-catalysed [3+2] cycloaddition

机译:通过Rh催化的[3 + 2]环加成反应不对称合成(-)-灵芝醇

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摘要

The development of efficient reactions for the one-pot construction of bicyclic ring systems bearing two quaternary carbon centres at their bridgehead positions represents a significant challenge to synthetic chemistry. The development of new methods capable of overcoming this challenge is highly desirable, because this motif can be found in a wide range of natural products with significant biological activities. Herein, we report an efficient [3+2] cycloaddition reaction between an enal and an alleno rhodium species, which was generated in situ from the corresponding enynol via a retro metal-propargylation reaction, to give [3.3.0] and [3.4.0] bicyclic systems bearing two quaternary atoms at their bridgehead positions. The developed chemistry has been successfully applied to the asymmetric total synthesis of natural product (-)-lingzhiol (4) for the first time in 17 steps.
机译:对于一锅式构造在桥头位置带有两个季碳中心的双环体系的高效反应的发展,对合成化学提出了重大挑战。迫切需要开发能够克服这一挑战的新方法,因为这种基序可以在具有重要生物活性的多种天然产物中找到。在本文中,我们报道了烯醇和烯丙基铑之间有效的[3 + 2]环加成反应,该反应是通过逆向金属-炔丙基化反应从相应的烯醇原位生成的,得到[3.3.0]和[3.4]。 [0]双环系统的桥头位置带有两个季原子。所开发的化学方法已成功通过17个步骤首次成功地用于天然产物(-)-灵芝酚(4)的不对称全合成。

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