Laboratory of Organic Chemistry, Department of Chemistry, National and Kapodistrian University of Athens, Panepistimiopolis, Athens, 15771, Greece.
Center of Excellence for Drug Design and Discovery, National and Kapodistrian University of Athens, Athens, 15771, Greece.
Chemistry. 2023 Jun 22;29(35):e202300556. doi: 10.1002/chem.202300556. Epub 2023 May 3.
The direct amide bond formation between a carboxylic acid and an amine still constitutes a challenging reaction for both academia and industry. We demonstrate herein that several pairs of amines (halogen bond acceptors) and organohalogen sources may be used for the photochemical amidation reaction under either UVA or sunlight irradiation. Our studies led to the identification of pyridine-CBr as an efficient agent to perform amide synthesis under LED 370 nm irradiation, avoiding super-stoichiometric quantities. An extended substrate scope was demonstrated, showing that the widely used amino and carboxyl protecting groups are compatible with this photochemical protocol, while a number of industrially interesting products and bioactive compounds were synthesized. Direct infusion-high resolution mass spectrometry studies suggest an unprecedented type of carboxylic acid activation mode upon irradiation, involving the generation of a symmetric anhydride, an active ester with pyridine N-oxide and a mixed anhydride with hypobromous acid.
在学术界和工业界,羧酸和胺之间的直接酰胺键形成仍然是一项具有挑战性的反应。我们在此证明,在 UVA 或阳光照射下,几对胺(卤键受体)和有机卤源可用于光化学酰胺化反应。我们的研究确定了吡啶-CBr 作为在 LED 370nm 照射下进行酰胺合成的有效试剂,避免了超化学计量的用量。扩展的底物范围表明,广泛使用的氨基和羧基保护基与该光化学方案兼容,同时合成了许多工业上有趣的产品和生物活性化合物。直接注入-高分辨率质谱研究表明,在照射下存在一种前所未有的羧酸激活模式,涉及对称酸酐、吡啶 N-氧化物的活性酯和次溴酸的混合酸酐的生成。