首页> 外文期刊>The Journal of Organic Chemistry >Cascade Michael Addition/Cycloketalization of Cyclic 1,3-Dicarbonyl Compounds:Important Role of the Tethered Alcohol of α,β- Unsaturated Carbonyl Compounds on Reaction Rate and Regioselectivity
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Cascade Michael Addition/Cycloketalization of Cyclic 1,3-Dicarbonyl Compounds:Important Role of the Tethered Alcohol of α,β- Unsaturated Carbonyl Compounds on Reaction Rate and Regioselectivity

机译:环状1,3-二羰基化合物的级联Michael加成/环化反应:α,β-不饱和羰基化合物的束缚醇对反应速率和区域选择性的重要作用

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摘要

Reactions of α,β-unsaturated aldehydes and cyclic 1,3-dicarbonyl compounds proceed primarily by cascade Knoevenagel condensation/six-π-electron electrocyclization (K6EC, formal [3 + 3] cycloaddition), while α,β-unsaturated ketones usually react with cyclic 1,3-dicarbonyl compounds in a 1,4-addition manner. This paper discloses our findings that under acidic conditions, α,β-unsaturated carbonyl compounds (ketones and aldehydes) with a tethered alcohol react with cyclic 1,3- dicarbonyl compounds in a highly regioselective 1,4-addition fashion via in situ generation of a hypothetical α-methylene cyclic oxonium ion as the reactive Michael acceptor. Our studies uncovered the important effect of the tethered alcohol on the reaction rate and/or efficiency and some new mechanistic aspects of the cascade Michael addition/cycloketalization. Finally, the substrate scope was examined, and 43 analogues of penicipyrone and tenuipyrone were prepared in good to excellent yields.
机译:α,β-不饱和醛与环状1,3-二羰基化合物的反应主要通过Knoevenagel级联/六-π-电子电环化(K6EC,正式的[3 + 3]环加成反应)进行,而α,β-不饱和酮通常会发生反应以1,4-加成方式与环状1,3-二羰基化合物反应。本文揭示了我们的发现,即在酸性条件下,α,β-不饱和羰基化合物(酮和醛)与束缚的醇通过原位生成环戊烯,以高度区域选择性的1,4-加成方式与环状1,3-二羰基化合物反应。假设的α-亚甲基环状氧鎓离子作为反应性迈克尔受体。我们的研究发现了束缚醇对反应速率和/或效率的重要影响,以及级联迈克尔加成/环缩酮化的一些新机理。最后,检查了底物的范围,并以良好至优异的产率制备了43个penicipyrone和tenuipyrone的类似物。

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