College of Pharmaceutical Sciences, Zhejiang University, Hangzhou 310058, P. R. China.
Org Lett. 2023 Mar 24;25(11):1850-1855. doi: 10.1021/acs.orglett.3c00326. Epub 2023 Mar 10.
Pd(II)-catalyzed oxidation of terminal olefins to methyl ketones has emerged as an attractive strategy for organic synthesis. Here we report the Pd(II)-catalyzed selective oxidation of olefins using -butyl hydroperoxide as the oxidant and 2-(1-indazol-1-yl)quinoline as the ligand. A wide range of olefins were well tolerated in this reaction system to provide methyl ketones, whereas the presence of AcO initiated the oxo-acyloxylation to afford the α-acetoxyacetone products. Isotope labeling studies and active-intermediate-capture experiments were performed to elucidate the underlying selective reaction mechanism. Notably, the generation of α-acetoxyacetone products involves the palladium enolate intermediate while the methyl ketone products were generated through the most commonly proposed alkylperoxide intermediates, followed by 1,2-hydride migration.
Pd(II)催化的末端烯烃氧化为甲基酮已成为有机合成中一种有吸引力的策略。在这里,我们报告了使用 -丁基过氧化氢作为氧化剂和 2-(1-吲唑-1-基)喹啉作为配体的 Pd(II)催化的烯烃选择性氧化。在该反应体系中,各种烯烃都能很好地耐受,得到甲基酮,而 AcO 的存在则引发了氧代-酰氧化反应,得到 α-乙酰氧基丙酮产物。进行了同位素标记研究和活性中间体捕获实验,以阐明潜在的选择性反应机制。值得注意的是,α-乙酰氧基丙酮产物的生成涉及钯烯醇化物中间体,而甲基酮产物则是通过最常提出的烷基过氧化物中间体生成的,然后是 1,2-氢迁移。