The cross-metathesis of terminal olefins using a novel ruthenium catalyst results in excellent selectivity for the Z-olefin homodimer. The reaction was found to tolerate a large number of functional groups, solvents, and temperatures while maintaining excellent Z-selectivity, even at high reaction conversions
Pyridine as a stabilizing donor ligand drastically improves the performance of ruthenium monothiolat...
Olefin metathesis is a prevailing method for the construction of organic molecules. Recent advanceme...
Olefin metathesis is a prevailing method for the construction of organic molecules. Recent advanceme...
The cross-metathesis of terminal olefins using a novel ruthenium catalyst results in excellent selec...
Chelated ruthenium catalysts can facilitate highly chemoselective olefin metathesis. Terminal and in...
A novel chelated ruthenium-based metathesis catalyst bearing an N-2,6-diisopropylphenyl group is rep...
The Z-selective ethenolysis activity of chelated ruthenium metathesis catalysts was investigated wit...
Publications about olefin metathesis will generally discuss how the discovery and development of wel...
The recent development of a class of Z-selective ruthenium metathesis catalysts containing a crucial...
Olefin cross metathesis is a particularly powerful transformation that has been exploited extensivel...
Olefin cross metathesis is a particularly powerful transformation that has been exploited extensivel...
We report the development of ruthenium-based metathesis catalysts with chelating N-heterocyclic carb...
A series of novel, air-stable ruthenium NHC catalysts with sulfonate and phosphate anions have been ...
Olefin metathesis is a prevailing method for the construction of organic molecules. Recent advanceme...
Olefin metathesis is a prevailing method for the construction of organic molecules. Recent advanceme...
Pyridine as a stabilizing donor ligand drastically improves the performance of ruthenium monothiolat...
Olefin metathesis is a prevailing method for the construction of organic molecules. Recent advanceme...
Olefin metathesis is a prevailing method for the construction of organic molecules. Recent advanceme...
The cross-metathesis of terminal olefins using a novel ruthenium catalyst results in excellent selec...
Chelated ruthenium catalysts can facilitate highly chemoselective olefin metathesis. Terminal and in...
A novel chelated ruthenium-based metathesis catalyst bearing an N-2,6-diisopropylphenyl group is rep...
The Z-selective ethenolysis activity of chelated ruthenium metathesis catalysts was investigated wit...
Publications about olefin metathesis will generally discuss how the discovery and development of wel...
The recent development of a class of Z-selective ruthenium metathesis catalysts containing a crucial...
Olefin cross metathesis is a particularly powerful transformation that has been exploited extensivel...
Olefin cross metathesis is a particularly powerful transformation that has been exploited extensivel...
We report the development of ruthenium-based metathesis catalysts with chelating N-heterocyclic carb...
A series of novel, air-stable ruthenium NHC catalysts with sulfonate and phosphate anions have been ...
Olefin metathesis is a prevailing method for the construction of organic molecules. Recent advanceme...
Olefin metathesis is a prevailing method for the construction of organic molecules. Recent advanceme...
Pyridine as a stabilizing donor ligand drastically improves the performance of ruthenium monothiolat...
Olefin metathesis is a prevailing method for the construction of organic molecules. Recent advanceme...
Olefin metathesis is a prevailing method for the construction of organic molecules. Recent advanceme...