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Recent advances in nickel-catalyzed reductive hydroalkylation and hydroarylation of electronically unbiased alkenes
by
Wang, Xiao-Xu
, Fu, Yao
, Lu, Xi
, Wang, Jia-Wang
, Li, Yan
in
Alkenes
/ Carbon
/ Catalysis
/ Chemical reactions
/ Chemical reduction
/ Chemistry
/ Chemistry and Materials Science
/ Chemistry/Food Science
/ Functional groups
/ Hydrogen
/ Ligands
/ Mini Reviews
/ Molecular structure
/ Nickel
/ Raw materials
/ Reagents
/ Substrates
/ Transition metals
2020
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Recent advances in nickel-catalyzed reductive hydroalkylation and hydroarylation of electronically unbiased alkenes
by
Wang, Xiao-Xu
, Fu, Yao
, Lu, Xi
, Wang, Jia-Wang
, Li, Yan
in
Alkenes
/ Carbon
/ Catalysis
/ Chemical reactions
/ Chemical reduction
/ Chemistry
/ Chemistry and Materials Science
/ Chemistry/Food Science
/ Functional groups
/ Hydrogen
/ Ligands
/ Mini Reviews
/ Molecular structure
/ Nickel
/ Raw materials
/ Reagents
/ Substrates
/ Transition metals
2020
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
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Recent advances in nickel-catalyzed reductive hydroalkylation and hydroarylation of electronically unbiased alkenes
by
Wang, Xiao-Xu
, Fu, Yao
, Lu, Xi
, Wang, Jia-Wang
, Li, Yan
in
Alkenes
/ Carbon
/ Catalysis
/ Chemical reactions
/ Chemical reduction
/ Chemistry
/ Chemistry and Materials Science
/ Chemistry/Food Science
/ Functional groups
/ Hydrogen
/ Ligands
/ Mini Reviews
/ Molecular structure
/ Nickel
/ Raw materials
/ Reagents
/ Substrates
/ Transition metals
2020
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Recent advances in nickel-catalyzed reductive hydroalkylation and hydroarylation of electronically unbiased alkenes
Journal Article
Recent advances in nickel-catalyzed reductive hydroalkylation and hydroarylation of electronically unbiased alkenes
2020
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Overview
The use of simple and easily available feedstock to quickly and efficiently obtain compounds with complex molecular structures through the transition-metal-catalyzed construction of C(sp
3
)-C bonds has important significance. As traditional C(sp
3
)-C coupling reagents, alkylmetallic reagents often have limitations such as air and moisture sensitivity and difficulties in storage. Nickel-catalyzed reductive olefin hydrocarbonation reactions use alkenes to replace organometallic reagents, reduce the synthesis steps, improve the functional group compatibility, and expand the substrate scope This minireview discusses important progress in the hydroalkylation and hydroarylation of electronically unbiased alkenes in recent years and describes the key mechanism and applications.
Publisher
Science China Press,Springer Nature B.V
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