Olefin metathesis is one of the most powerful C-C double-bond-forming reactions. Metathesis reactions have had a tremendous impact in organic synthesis, enabling a variety of applications in polymer chemistry, drug discovery and chemical biology. Although challenging, the possibility to perform aqueous metatheses has become an attractive alternative, not only because water is a more sustainable medium, but also to exploit biocompatible conditions. This review focuses on the progress made in aqueous olefin metatheses and their applications in chemical biology
Organic molecules are primarily made up of carbon-carbon (C-C) bonds. As a result, methods that prom...
Olefin metathesis is a versatile synthetic tool for the redistribution of alkylidene fragments at ca...
Sixteen novel, Ru-based olefin metathesis catalysts bearing pH responsive ligands were synthesized. ...
Olefin metathesis is one of the most powerful C–C double-bond-forming reactions. Metathesis reaction...
Olefin metathesis is a Nobel prize winning reaction that can rearrange double or triple bonds with t...
Olefin metathesis is the most powerful, versatile reaction in current use for the formation of new c...
Catalytic olefin metathesis has significantly enhanced the power of synthetic chemistry. In particul...
Catalytic olefin metathesis has significantly enhanced the power of synthetic chemistry. In particul...
Ruthenium-based olefin metathesis catalysts, known for their functional group tolerance and broad ap...
A novel water-soluble ruthenium olefin metathesis catalyst supported by a poly(ethylene glycol) conj...
A novel water-soluble ruthenium olefin metathesis catalyst supported by a poly(ethylene glycol) conj...
Olefin metathesis has become a mainstay in organic synthesis.1 Cross-metathesis (CM), however, is la...
Organic molecules are primarily made up of carbon-carbon (C-C) bonds. As a result, methods that prom...
Over the past decade, olefin metathesis has emerged as a powerful method for the formation of carbon...
Olefin metathesis is a versatile synthetic tool for the redistribution of alkylidene fragments at ca...
Organic molecules are primarily made up of carbon-carbon (C-C) bonds. As a result, methods that prom...
Olefin metathesis is a versatile synthetic tool for the redistribution of alkylidene fragments at ca...
Sixteen novel, Ru-based olefin metathesis catalysts bearing pH responsive ligands were synthesized. ...
Olefin metathesis is one of the most powerful C–C double-bond-forming reactions. Metathesis reaction...
Olefin metathesis is a Nobel prize winning reaction that can rearrange double or triple bonds with t...
Olefin metathesis is the most powerful, versatile reaction in current use for the formation of new c...
Catalytic olefin metathesis has significantly enhanced the power of synthetic chemistry. In particul...
Catalytic olefin metathesis has significantly enhanced the power of synthetic chemistry. In particul...
Ruthenium-based olefin metathesis catalysts, known for their functional group tolerance and broad ap...
A novel water-soluble ruthenium olefin metathesis catalyst supported by a poly(ethylene glycol) conj...
A novel water-soluble ruthenium olefin metathesis catalyst supported by a poly(ethylene glycol) conj...
Olefin metathesis has become a mainstay in organic synthesis.1 Cross-metathesis (CM), however, is la...
Organic molecules are primarily made up of carbon-carbon (C-C) bonds. As a result, methods that prom...
Over the past decade, olefin metathesis has emerged as a powerful method for the formation of carbon...
Olefin metathesis is a versatile synthetic tool for the redistribution of alkylidene fragments at ca...
Organic molecules are primarily made up of carbon-carbon (C-C) bonds. As a result, methods that prom...
Olefin metathesis is a versatile synthetic tool for the redistribution of alkylidene fragments at ca...
Sixteen novel, Ru-based olefin metathesis catalysts bearing pH responsive ligands were synthesized. ...