N-Heterocyclic carbene (NHC) ligands IMesNMe2 and IMes(NMe2)2 derived from the well-known IMes ligand by substituting the carbenic heterocycle with one and two dimethylamino groups, respectively, were employed for the synthesis of second-generation Grubbs- and Grubbs-Hoveyda-type ruthenium metathesis precatalysts. Whereas the stability of the complexes was found to depend on the degree of dimethylamino-substitution and on the type of complex, the backbone-substitution was shown to have a positive impact on their catalytic activity in ring-closing metathesis, with a more pronounced effect in the second-generation Grubbs-type series. The new complexes were successfully implemented in a number of challenging olefin metathesis reactions leading to the formation of tetra-substituted C=C double bonds and/or functionalized compounds.
A new protocol for ring-closing metathesis/isomerization
sequence
was developed. The reactions of selected dienes were performed in
overheated 2-methyltetrahydrofuran at 120 °C and provided a wide
range of cyclic vinyl ethers and amides with good yields and selectivities.
Computational analysis suggests that the relative yield of products
depends on a thermodynamically driven process on the basis of relative
stabilities of isomers.
A series of phosphine oxides and H-phosphinates were vinylated in the presence of the recently discovered iodine(III) reagents vinylbenziodoxolones (VBX), providing the corresponding alk-1-enyl phosphine oxides and alk-1-enyl phosphinates in...
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