Synergy in synthesis: Strategic consideration of metathesis and Suzuki-Miyaura (SM) cross-coupling for C-C bond-formation processes has opened up new and "green" synthetic routes to various complex targets. The use of this synergistic combination for the synthesis of supramolecular ligands, polyaromatic compounds, and complex natural products is covered in this Focus Review. In recent years, ruthenium-catalyzed metathesis and palladium-catalyzed Suzuki-Miyaura cross-coupling reactions have proven to be the most efficient tools for carbon-carbon bond formation in synthetic organic chemistry. This is mainly because of the stability and remarkable functional-group tolerance of these catalysts. Therefore, the strategic consideration of these tw...
Carbon-carbon bond forming reactions remain among the most important for the synthesis of organic st...
Ruthenium based olefin metathesis catalysts have provided new routes to olefins that appear in a var...
Carbon-carbon bond forming reactions remain among the most important for the synthesis of organic st...
This account provides an overview of recent work, including our own contribution dealing with Suzuki...
This account provides an overview of recent work, including our own contribution dealing with Suzuki...
Ruthenium based olefin metathesis catalysts have provided new routes to olefins that appear in a var...
Ruthenium based olefin metathesis catalysts have provided new routes to olefins that appear in a var...
In recent years, Pd-catalyzed Suzuki-Miyaura (SM) cross-coupling reactions have revolutionized appro...
Ruthenium based olefin metathesis catalysts have provided new routes to olefins that appear in a var...
The Suzuki-Miyaura reaction (SMR), involving the coupling of an organoboron reagent and an organic h...
Organic molecules are primarily made up of carbon-carbon (C-C) bonds. As a result, methods that prom...
In recent years, Pd-catalyzed Suzuki-Miyaura (SM) cross-coupling reactions have revolutionized appro...
Organic molecules are primarily made up of carbon-carbon (C-C) bonds. As a result, methods that prom...
The Suzuki-Miyaura reaction (SMR), involving the coupling of an organoboron reagent and an organic h...
Olefin metathesis has emerged as a powerful tool for the formation of carboncarbon double bonds. The...
Carbon-carbon bond forming reactions remain among the most important for the synthesis of organic st...
Ruthenium based olefin metathesis catalysts have provided new routes to olefins that appear in a var...
Carbon-carbon bond forming reactions remain among the most important for the synthesis of organic st...
This account provides an overview of recent work, including our own contribution dealing with Suzuki...
This account provides an overview of recent work, including our own contribution dealing with Suzuki...
Ruthenium based olefin metathesis catalysts have provided new routes to olefins that appear in a var...
Ruthenium based olefin metathesis catalysts have provided new routes to olefins that appear in a var...
In recent years, Pd-catalyzed Suzuki-Miyaura (SM) cross-coupling reactions have revolutionized appro...
Ruthenium based olefin metathesis catalysts have provided new routes to olefins that appear in a var...
The Suzuki-Miyaura reaction (SMR), involving the coupling of an organoboron reagent and an organic h...
Organic molecules are primarily made up of carbon-carbon (C-C) bonds. As a result, methods that prom...
In recent years, Pd-catalyzed Suzuki-Miyaura (SM) cross-coupling reactions have revolutionized appro...
Organic molecules are primarily made up of carbon-carbon (C-C) bonds. As a result, methods that prom...
The Suzuki-Miyaura reaction (SMR), involving the coupling of an organoboron reagent and an organic h...
Olefin metathesis has emerged as a powerful tool for the formation of carboncarbon double bonds. The...
Carbon-carbon bond forming reactions remain among the most important for the synthesis of organic st...
Ruthenium based olefin metathesis catalysts have provided new routes to olefins that appear in a var...
Carbon-carbon bond forming reactions remain among the most important for the synthesis of organic st...