TY - JOUR
T1 - Recent Advancements in Development of Radical Silylation Reactions
AU - Khatravath, Mahender
AU - Kumar Maurya, Rohit
AU - Dey, Ashutosh
AU - Goud Burra, Amarender
AU - Chatterjee, Rana
AU - Dandela, Rambabu
N1 - Publisher Copyright:
© 2022, Bentham Science Publishers. All rights reserved.
PY - 2022/5/1
Y1 - 2022/5/1
N2 - Transition metal-free radical hydrosilylation of alkynes and factionalized alkenes tovinylsilanes, organosilanes from alkenes, radical silylative cyclizations for sila heterocycles,aromatic dehydrogenative radical silylation, sila-amino acids, silyl hydroperoxides by usingtransition metal-free reaction conditions such as peroxides, photocatalyst, hydrogen atomtransfer catalyst, radical initiators have become one of the most important and useful methodologiesfor the construction of C-Si bonds for their synthetic applications. In order to demonstratethe growth in this area, this review highlights the last twenty years of success in thefields of silylation of aromatics, silylative cyclizations of sila heterocycles, synthesis of vinylsilanesby hydrosilylation of alkynes, and functionalized alkenes, organosilanes from alkenesand dehydrogenative approaches for vinylsilanes involving radical mechanisms. Webelieve that summarizing these methods would be very useful for the chemists who are interested in the synthesis oforganosilicon compounds for drug discovery or the development of silicon-based materials for industrial applications.
AB - Transition metal-free radical hydrosilylation of alkynes and factionalized alkenes tovinylsilanes, organosilanes from alkenes, radical silylative cyclizations for sila heterocycles,aromatic dehydrogenative radical silylation, sila-amino acids, silyl hydroperoxides by usingtransition metal-free reaction conditions such as peroxides, photocatalyst, hydrogen atomtransfer catalyst, radical initiators have become one of the most important and useful methodologiesfor the construction of C-Si bonds for their synthetic applications. In order to demonstratethe growth in this area, this review highlights the last twenty years of success in thefields of silylation of aromatics, silylative cyclizations of sila heterocycles, synthesis of vinylsilanesby hydrosilylation of alkynes, and functionalized alkenes, organosilanes from alkenesand dehydrogenative approaches for vinylsilanes involving radical mechanisms. Webelieve that summarizing these methods would be very useful for the chemists who are interested in the synthesis oforganosilicon compounds for drug discovery or the development of silicon-based materials for industrial applications.
KW - Hydrosilylation
KW - alkenylsilanes
KW - industrial applications
KW - radical silylation
KW - sila-heterocycles
KW - transition-metal
UR - http://www.scopus.com/inward/record.url?scp=85139503505&partnerID=8YFLogxK
U2 - 10.2174/1385272826666220616155337
DO - 10.2174/1385272826666220616155337
M3 - Article
AN - SCOPUS:85139503505
SN - 1385-2728
VL - 26
SP - 920
EP - 960
JO - Current Organic Chemistry
JF - Current Organic Chemistry
IS - 10
ER -