TY - JOUR
T1 - Visible Light-Mediated Dearomative Hydrogen Atom Abstraction/ Cyclization Cascade of Indoles
AU - Xiong, Yang
AU - Großkopf, Johannes
AU - Jandl, Christian
AU - Bach, Thorsten
N1 - Publisher Copyright:
© 2022 The Authors. Angewandte Chemie International Edition published by Wiley-VCH GmbH.
PY - 2022/4/25
Y1 - 2022/4/25
N2 - The photochemical synthesis of yet unknown 2-oxospiro[azetidine-3,3′-indolines] (17 examples, 80–95 % yield), 2,4-dioxospiro[azetidine-3,3′-indolines] (eight examples, 87–97 % yield), and 1-oxo-1,3-dihydrospiro[indene-2,3′-indolines] (17 examples, 85–97 % yield) is described. Starting from readily accessible 3-substituted indoles, a dearomatization of the indole core was accomplished upon irradiation at λ=420 nm in the presence of thioxanthen-9-one (10 mol%) as the sensitizer. Based on mechanistic evidence (triplet energy determination, deuteration experiments, by-product analysis) it is proposed that the reaction proceeds by energy transfer via a 1,4- or 1,5-diradical intermediate. The latter intermediates are formed by excited state hydrogen atom transfer from suitable alkyl groups within the C3 substituent to the indole C2 carbon atom. Subsequent ring closure proceeds with pronounced diastereoselectivity to generate a 4- or 5-membered spirocyclic dearomatized product with several options for further functionalization.
AB - The photochemical synthesis of yet unknown 2-oxospiro[azetidine-3,3′-indolines] (17 examples, 80–95 % yield), 2,4-dioxospiro[azetidine-3,3′-indolines] (eight examples, 87–97 % yield), and 1-oxo-1,3-dihydrospiro[indene-2,3′-indolines] (17 examples, 85–97 % yield) is described. Starting from readily accessible 3-substituted indoles, a dearomatization of the indole core was accomplished upon irradiation at λ=420 nm in the presence of thioxanthen-9-one (10 mol%) as the sensitizer. Based on mechanistic evidence (triplet energy determination, deuteration experiments, by-product analysis) it is proposed that the reaction proceeds by energy transfer via a 1,4- or 1,5-diradical intermediate. The latter intermediates are formed by excited state hydrogen atom transfer from suitable alkyl groups within the C3 substituent to the indole C2 carbon atom. Subsequent ring closure proceeds with pronounced diastereoselectivity to generate a 4- or 5-membered spirocyclic dearomatized product with several options for further functionalization.
KW - C−H Activation
KW - Heterocycles
KW - Hydrogen Transfer
KW - Photochemistry
KW - Sensitizers
UR - http://www.scopus.com/inward/record.url?scp=85125760960&partnerID=8YFLogxK
U2 - 10.1002/anie.202200555
DO - 10.1002/anie.202200555
M3 - Article
C2 - 35213774
AN - SCOPUS:85125760960
SN - 1433-7851
VL - 61
JO - Angewandte Chemie International Edition in English
JF - Angewandte Chemie International Edition in English
IS - 18
M1 - e202200555
ER -