Organocatalyzed Photoelectrochemistry for the Generation of Acyl and Phosphoryl Radicals through Hydrogen Atom-Transfer Process
Hong He,
Cai-Mi Pan,
Zhong-Wei Hou
et al.
Abstract:An
organocatalyzed photoelectrochemical method for the generation
of acyl and phosphoryl radicals from formamides, aldehydes, and phosphine
oxides has been developed. This protocol utilizes 9,10-phenanthrenequinone
(PQ) as both a molecular catalyst and a hydrogen atom-transfer (HAT)
reagent, eliminating the requirement for external metal-based reagents,
HAT reagents, and oxidants. The generated acyl radicals can be applied
to a range of radical-mediated transformation reactions, including
C–H carbamoylation of… Show more
A novel and straightforward method for the iron-catalyzed regioselective cross-dehydrogenative coupling of paraquinone methides (p-QMs) with formamides has been developed, facilitated by the in situ activation of the C(sp 2 )−H bonds of the formyl and alkenyl substituents via a radical strategy. This method does not require the preactivation of the substrates, and it can accommodate a wide range of p-QMs and formamides under the optimized reaction conditions, resulting in the formation of the expected C-7 acetamides-functionalized para-quinone methides with moderate to good yields. The control experiments revealed that the reaction follows the fundamental equation of second-order kinetics. Additionally, an exploration of the Hammett effect was undertaken to elucidate the impact of the substituents for the reaction. In combination with the DFT calculation, a plausible reaction mechanism was proposed through meticulously controlled experiments.
Azoles have widespread applications in medicinal chemistry, for example, thiazoles, imidazoles, benzimidazoles, isoxazoles, tetrazoles and triazoles appear in the top 25 most frequent N-heterocycles in FDA approved drugs. Efficient routes...
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