Metal-Free Regioselective Hypervalent Iodine-Mediated C-2 and C-3 Difunctionalization of N-Substituted Indoles
Dongdong Xu, Wen‐Wu Sun, Yanli Xie, Ji‐Kai Liu, Bin Liu, Yingbi Zhou, Bin Wu
Abstract
Dongdong Xu, Wen‐Wu Sun, Yanli Xie, Ji‐Kai Liu, Bin Liu, Yingbi Zhou, Bin Wu
Abstract
Mild, metal-free, highly regioselective hypervalent-iodine mediated C-2 acetoxylation and C-3 oxidations of N -substituted indoles with (diacetoxyiodo)benzene [PhI(OAc) 2 ] have been reported. The reaction involves three cascade steps. The quantity of PhI(OAc) 2 employed in this reaction plays a key role in the outcome of three types of products ( 2a – 4a ). Furthermore, the mild and highly regioselective C-2 oxidation and C-3 dichlorination of N -substituted indoles with PhICl 2 have been developed. Extensive studies including in situ IR techniques and H 2 O 18 -labeling experiment were performed to gain insight into the possible reaction mechanism.
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Mild, metal-free, highly regioselective hypervalent-iodine mediated C-2 acetoxylation and C-3 oxidations of N -substituted indoles with (diacetoxyiodo)benzene [PhI(OAc) 2 ] have been reported. The reaction involves three cascade steps. The quantity of PhI(OAc) 2 employed in this reaction plays a key role in the outcome of three types of products ( 2a – 4a ). Furthermore, the mild and highly regioselective C-2 oxidation and C-3 dichlorination of N -substituted indoles with PhICl 2 have been developed. Extensive studies including in situ IR techniques and H 2 O 18 -labeling experiment were performed to gain insight into the possible reaction mechanism.
Key concepts: Hypervalent molecule, Regioselectivity, Chemistry, Iodine, Benzene, Medicinal chemistry, Reaction mechanism, Combinatorial chemistry