Kitzinger Katelyn M, Johnson Jeffrey S
Department of Chemistry, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599-3290, United States.
Org Lett. 2023 Oct 13;25(40):7446-7450. doi: 10.1021/acs.orglett.3c03100. Epub 2023 Oct 3.
The synthesis of heretofore unknown γ-spirobutenolides has been achieved via an -CPBA-mediated oxidation of β-furyl amides. The reaction employs a tethered amide, ostensibly a poorly reactive carbonyl, as a nontraditional nucleophile resulting in spirolactone formation and concurrent amide cleavage. The transformation exhibits functional group tolerance and compatibility with complex compounds. H NMR spectroscopic studies reveal the identities of key intermediates in the oxidation-spirolactonization-oxidation cascade, suggesting a plausible mechanistic pathway. The distinct diastereofaces of the electrophilic butenolide product may be used for diastereoselective cycloaddition and conjugate addition reactions.
通过-CPBA介导的β-呋喃酰胺氧化反应,实现了此前未知的γ-螺丁烯内酯的合成。该反应使用了一个连接的酰胺,表面上是一个反应活性较差的羰基,作为非传统亲核试剂,导致螺内酯形成并同时发生酰胺裂解。该转化反应表现出官能团耐受性以及与复杂化合物的兼容性。1H NMR光谱研究揭示了氧化-螺内酯化-氧化级联反应中关键中间体的结构,表明了一种合理的反应机理途径。亲电丁烯内酯产物独特的非对映面可用于非对映选择性环加成反应和共轭加成反应。