Photosensitized Reductive Elimination of Gold (III) to Enable Esterification of Aryl Iodides with Carboxylic Acids

J Wu, W Du, L Zhang, G Li, R Yang, Z Xia - JACS Au, 2024 - ACS Publications
J Wu, W Du, L Zhang, G Li, R Yang, Z Xia
JACS Au, 2024ACS Publications
Compared to the well-established transition metal-catalyzed cross-coupling reactions, Au
(I)/Au (III)-catalyzed cross-coupling reactions have lagged behind. Despite some
advancements, achieving gold-catalyzed C–O coupling with carboxylic acids via an Au (III)
carboxylate intermediate remains challenging due to the thermal unfavorability of the critical
reductive elimination step. Here, we present the first photosensitized reductive elimination of
gold (III) to enable esterification of aryl iodides with carboxylic acids. In the presence of a (P …
Compared to the well-established transition metal-catalyzed cross-coupling reactions, Au(I)/Au(III)-catalyzed cross-coupling reactions have lagged behind. Despite some advancements, achieving gold-catalyzed C–O coupling with carboxylic acids via an Au(III) carboxylate intermediate remains challenging due to the thermal unfavorability of the critical reductive elimination step. Here, we present the first photosensitized reductive elimination of gold(III) to enable esterification of aryl iodides with carboxylic acids. In the presence of a (P, N)-gold(I) catalyst and a photosensitizer benzophenone under blue LED irradiation, esterification derivatives were obtained from aryl iodides with both aryl and alkyl (1°, 2°, 3°) carboxylic acids. Mechanistic and modeling studies support that energy transfer (EnT) from a photosensitizer produces an excited-state gold(III) complex that couples aryl iodides with carboxylic acids. This photoinduced energy-transfer strategy has been applied in several other photosensitized gold catalysis reactions, indicating its potential for further applications.
ACS Publications
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