烯醇羧酸酯的无碱钯催化硼酸化反应以及去硼酸化和交叉偶联的进一步反应性

David, Leitch, Gregory, Gaube, Douglas, Miller, Rowan, McCallum, Nahiane, Pipaon Fernandez
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引用次数: 0

摘要

报告了一系列针对烯基羧酸酯的无碱钯催化硼酸化过程。通过高通量实验,利用原位生成的催化剂体系发现并优化了这些反应。对于内酯或内酰胺底物,生成的烯基频哪醇硼酸酯水解不稳定,即使在轻度碱性水溶液条件下也会发生原硼化反应。对这种原硼酸化反应进行优化后,C-O 键可进行温和的两步还原,在实现净脱氧的同时保持烯烃完整。相比之下,使用另一种四烷氧基二硼源--B2EPin2--则成功地进行了催化,并提高了所得有机硼的稳定性。这样,在抑制原去硼化的同时,还能实现交叉偶联等进一步反应。
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Base-free palladium-catalyzed borylation of enol carboxylates and further reactivity toward deboronation and cross-coupling
A series of base-free Pd-catalyzed borylation procedures are reported for a number of alkenyl carboxylates. High-throughput experimentation was used to discover and optimize these reactions using in situ generated catalyst systems. With lactone or lactam substrates, the resulting alkenyl pinacol boronates are hydrolytically unstable, undergoing protodeboronation under even mildly basic aqueous conditions. Optimization of this protodeboronation resulted in a mild, two-step reduction of the C–O bond, achieving net-deoxygenation while leaving the alkene intact. In contrast, use of an alternative tetraalkoxydiboron source – B2EPin2 – was successful in catalysis, and offered improved stability of the resulting organoboron species. This enables further reactivity, such as cross-coupling, while suppressing protodeboronation.
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