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Enantioselective Alcohol C-H Functionalization for Polyketide Construction: Unlocking Redox-Economy and Site-Selectivity for Ideal Chemical Synthesis

机译:用于聚酮化合物构建的对映选择性醇C-H功能化:释放理想的化学合成所需的氧化还原经济性和位点选择性

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摘要

The development and application of stereo- and site-selective catalytic methods that directly convert lower alcohols to higher alcohols are described. These processes merge the characteristics of transfer hydrogenation and carbonyl addition, exploiting alcohols and π-unsaturated reactants as redox pairs, which upon hydrogen transfer generate transient carbonyl-organometal pairs en route to products of C-C coupling. Unlike classical carbonyl additions, stoichiometric organometallic reagents and discrete alcohol-to-carbonyl redox reactions are not required. Additionally, due to a kinetic preference for primary alcohol dehydrogenation, the site-selective modification of glycols and higher polyols is possible, streamlining or eliminating use of protecting groups. The total syntheses of several iconic type I polyketide natural products were undertaken using these methods. In each case, the target compounds were prepared in significantly fewer steps than previously achieved.
机译:描述了直接将低级醇转化为高级醇的立体选择性催化方法的开发和应用。这些过程结合了转移加氢和羰基加成的特征,利用醇和π-不饱和反应物作为氧化还原对,这在氢转移后生成瞬态的羰基-有机金属对,途经C-C偶联产物。与经典的羰基添加不同,不需要化学计量的有机金属试剂和不连续的醇对羰基氧化还原反应。另外,由于伯醇脱氢的动力学偏好,二醇和高级多元醇的位点选择性改性是可能的,从而简化或消除了保护基的使用。使用这些方法进行了几种标志性的I型聚酮化合物天然产物的总合成。在每种情况下,目标化合物的制备步骤均比以前实现的步骤少得多。

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