Article

Recent advances in the synthetic and mechanistic aspects of the ruthenium-catalyzed carbon-heteroatom bond forming reactions of alkenes and alkynes.

Department of Chemistry, Marquette University, Milwaukee, Wisconsin 53201-1881, U.S.A.
Journal of Organometallic Chemistry (impact factor: 2.38). 01/2011; 696(1):76-80. DOI:10.1016/j.jorganchem.2010.08.002 pp.76-80
Source: PubMed

ABSTRACT The group's recent advances in catalytic carbon-to-heteroatom bond forming reactions of alkenes and alkynes are described. For the C-O bond formation reaction, a well-defined bifunctional ruthenium-amido catalyst has been successfully employed for the conjugate addition of alcohols to acrylic compounds. The ruthenium-hydride complex (PCy(3))(2)(CO)RuHCl was found to be a highly effective catalyst for the regioselective alkyne-to-carboxylic acid coupling reaction in yielding synthetically useful enol ester products. Cationic ruthenium-hydride catalyst generated in-situ from (PCy(3))(2)(CO)RuHCl/HBF(4)·OEt(2) was successfully utilized for both the hydroamination and related C-N bond forming reactions of alkenes. For the C-Si bond formation reaction, regio- and stereoselective dehydrosilylation of alkenes and hydrosilylation of alkynes have been developed by using a well-defined ruthenium-hydride catalyst. Scope and mechanistic aspects of these carbon-to-heteroatom bond-forming reactions are discussed.

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Keywords

acrylic compounds
 
C-N bond
 
C-O bond formation reaction
 
C-Si bond formation reaction
 
carbon-to-heteroatom bond-forming reactions
 
catalytic carbon-to-heteroatom bond
 
Cationic ruthenium-hydride catalyst
 
conjugate addition
 
effective catalyst
 
group's recent advances
 
in-situ
 
regio-
 
regioselective alkyne-to-carboxylic acid coupling reaction
 
ruthenium-hydride complex
 
stereoselective dehydrosilylation
 
synthetically useful enol ester products
 
well-defined bifunctional ruthenium-amido catalyst
 
well-defined ruthenium-hydride catalyst
 

Chae S Yi