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Conformations of N-heterocyclic carbene ligands in ruthenium complexes relevant to olefin metathesis.


ABSTRACT: The structure of ruthenium-based olefin metathesis catalyst 3 and model pi-complex 5 in solution and in the solid state are reported. The N-tolyl ligands, due to their lower symmetry than the traditional N-mesityl substituents, complicate this analysis, but ultimately provide explanation for the enhanced reactivity of 3 relative to standard catalyst 2. The tilt of the N-tolyl ring provides additional space near the ruthenium center, which is consistent with the enhanced reactivity of 3 toward sterically demanding substrates. Due to this tilt, the more sterically accessible face bears the two methyl substituents of the N-aryl rings. These experimental studies are supported by computational studies of these complexes by DFT. The experimental data provides a means to validate the accuracy of the B3LYP and M06 functionals. B3LYP provides geometries that match X-ray crystal structural data more closely, though it leads to slightly less (approximately 0.5 kcal mol-1) accuracy than M06 most likely because it underestimates attractive noncovalent interactions.

SUBMITTER: Stewart IC 

PROVIDER: S-EPMC2638209 | biostudies-literature | 2009 Feb

REPOSITORIES: biostudies-literature

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Conformations of N-heterocyclic carbene ligands in ruthenium complexes relevant to olefin metathesis.

Stewart Ian C IC   Benitez Diego D   O'Leary Daniel J DJ   Tkatchouk Ekaterina E   Day Michael W MW   Goddard William A WA   Grubbs Robert H RH  

Journal of the American Chemical Society 20090201 5


The structure of ruthenium-based olefin metathesis catalyst 3 and model pi-complex 5 in solution and in the solid state are reported. The N-tolyl ligands, due to their lower symmetry than the traditional N-mesityl substituents, complicate this analysis, but ultimately provide explanation for the enhanced reactivity of 3 relative to standard catalyst 2. The tilt of the N-tolyl ring provides additional space near the ruthenium center, which is consistent with the enhanced reactivity of 3 toward st  ...[more]

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