TY - JOUR
T1 - Desulfonylation via Radical Process
T2 - Recent Developments in Organic Synthesis
AU - Chu, Xue Qiang
AU - Ge, Danhua
AU - Cui, Yan Ying
AU - Shen, Zhi Liang
AU - Li, Chao Jun
N1 - Publisher Copyright:
©
PY - 2021/10/27
Y1 - 2021/10/27
N2 - As the "chemical chameleon", sulfonyl-containing compounds and their variants have been merged with various types of reactions for the efficient construction of diverse molecular architectures by taking advantage of their incredible reactive flexibility. Currently, their involvement in radical transformations, in which the sulfonyl group typically acts as a leaving group via selective C-S, N-S, O-S, S-S, and Se-S bond cleavage/functionalization, has facilitated new bond formation strategies which are complementary to classical two-electron cross-couplings via organometallic or ionic intermediates. Considering the great influence and synthetic potential of these novel avenues, we summarize recent advances in this rapidly expanding area by discussing the reaction designs, substrate scopes, mechanistic studies, and their limitations, outlining the state-of-the-art processes involved in radical-mediated desulfonylation and related transformations. With a specific emphasis on their synthetic applications, we believe this review will be useful for medicinal and synthetic organic chemists who are interested in radical chemistry and radical-mediated desulfonylation in particular.
AB - As the "chemical chameleon", sulfonyl-containing compounds and their variants have been merged with various types of reactions for the efficient construction of diverse molecular architectures by taking advantage of their incredible reactive flexibility. Currently, their involvement in radical transformations, in which the sulfonyl group typically acts as a leaving group via selective C-S, N-S, O-S, S-S, and Se-S bond cleavage/functionalization, has facilitated new bond formation strategies which are complementary to classical two-electron cross-couplings via organometallic or ionic intermediates. Considering the great influence and synthetic potential of these novel avenues, we summarize recent advances in this rapidly expanding area by discussing the reaction designs, substrate scopes, mechanistic studies, and their limitations, outlining the state-of-the-art processes involved in radical-mediated desulfonylation and related transformations. With a specific emphasis on their synthetic applications, we believe this review will be useful for medicinal and synthetic organic chemists who are interested in radical chemistry and radical-mediated desulfonylation in particular.
UR - http://www.scopus.com/inward/record.url?scp=85114016697&partnerID=8YFLogxK
U2 - 10.1021/acs.chemrev.1c00084
DO - 10.1021/acs.chemrev.1c00084
M3 - 文献综述
C2 - 34387465
AN - SCOPUS:85114016697
SN - 0009-2665
VL - 121
SP - 12548
EP - 12680
JO - Chemical Reviews
JF - Chemical Reviews
IS - 20
ER -