The catalytic activity of a series of ruthenium(II) complexes in azide-alkyne cycloadditions has been evaluated. The [Cp{*}RuCI] complexes, such as Cp{*}RuCI(PPh3)(2), Cp{*}RuCI(COD), and Cp{*}RuCI(NBD), were among the most effective catalysts. In the presence of catalytic Cp{*}RuCI(PPh3)(2) or Cp{*}RuCI(COD), primary and secondary azides react with a broad range of terminal alkynes containing a range of functionalities selectively producing 1,5-disubstituted 1,2,3-triazoles; tertiary azides were significantly less reactive. Both complexes also promote the cycloaddition reactions of organic azides with internal alkynes, providing access to fully-substituted 1,2,3-triazoles. The ruthenium-catalyzed azide-alkyne cycloaddition (RuAAC) appears ...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L = ...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L = ...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L = ...
Substantial progress in ruthenium-catalyzed cycloadditions of organic azides and alkynes are reporte...
Under ruthenium catalysis, 1,5-disubstituted 1,2,3-triazoles can be accessed with high selectivity f...
The ruthenium-catalyzed azide alkyne cycloaddition (RuAAC) affords 1,5-disubstituted 1,2,3-triazoles...
The catalytic activity of a series of ruthenium complexes lacking cyclopentadienyl ligands has been ...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L =...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L =...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L =...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L =...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L =...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L = ...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L = ...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L =...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L = ...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L = ...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L = ...
Substantial progress in ruthenium-catalyzed cycloadditions of organic azides and alkynes are reporte...
Under ruthenium catalysis, 1,5-disubstituted 1,2,3-triazoles can be accessed with high selectivity f...
The ruthenium-catalyzed azide alkyne cycloaddition (RuAAC) affords 1,5-disubstituted 1,2,3-triazoles...
The catalytic activity of a series of ruthenium complexes lacking cyclopentadienyl ligands has been ...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L =...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L =...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L =...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L =...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L =...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L = ...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L = ...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L =...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L = ...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L = ...
The performance of 16-electron ruthenium complexes with the general formula Cp*Ru(L)X (in which L = ...