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Catalyst-Controlled Stereoselective Olefin Metathesis as a Principal Strategy in Multistep Synthesis Design: A Concise Route to (+)-Neopeltolide

机译:催化剂控制的立体选择性烯烃复分解作为多步合成设计的主要策略:(+) - Neopeltolide的简明路线

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摘要

Molybdenum-, tungsten-, and ruthenium-based complexes that control the stereochemical outcome of olefin metathesis reactions have been recently introduced. However, the complementary nature of these systems through their combined use in multistep complex molecule synthesis has not been illustrated. A concise diastereo- and enantioselective route that furnishes the anti-proliferative natural product neopeltolide is now disclosed. Catalytic transformations are employed to address every stereochemical issue. Among the featured processes are an enantioselective ring-opening/cross-metathesis promoted by a Mo monoaryloxide pyrrolide (MAP) complex and a macrocyclic ring-closing metathesis that affords a trisubstituted alkene and is catalyzed by a Mo bis(aryloxide) species. Furthermore, Z-selective cross-metathesis reactions, facilitated by Mo and Ru complexes, have been employed in the stereoselective synthesis of the acyclic dienyl moiety of the target molecule.
机译:最近已经引入了控制烯烃复分解反应的立体化学结果的基于钼,钨和钌的配合物。但是,尚未说明这些系统在多步复杂分子合成中的组合使用的互补性质。现在公开了提供抗增殖的天然产物新菊酯的简洁的非对映和对映选择性途径。催化转化用于解决每个立体化学问题。特色工艺包括由单芳基氧吡咯Mo(MAP)配合物促进的对映选择性开环/复分解和提供三取代烯烃并由双(芳氧基)Mo催化的大环闭环易位。此外,由Mo和Ru配合物促进的Z-选择性交叉复分解反应已用于目标分子的无环二烯基部分的立体选择性合成中。

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