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C-H - -O hydrogen-bonding involving terminal, doubly, and triply bridging CO ligands.

C-H -O hydrogen bonding is evident in the tapes formed by 42,43 and 44

C-H a7lation of pyridine N-oxides and N-aminopyridiniums with arenes and synthetic applications.

C-H acetoxylation with NCN complex Ig.

C-H activated adamantyl-substituted NHC-containing catalyst with high Z-

C-H activation and alkane coordination

C-H activation and C-C and C-O bond forming reactions promoted by yttrium carbenes.

C-H activation as a Claisen condensation equivalent.

C-H activation as a Claisen rearrangement equivalent.

C-H activation as a Mannich reaction equivalent.

C-H Activation as an aldol reaction equivalent.

C-H activation by using Ir .

C-H activation competition between sulfonamide and amide.

C-H activation cross-coupling reactions of aryl- and alkenylsilanols.

C-H activation deprotonation pathway for arylation.

C-H activation in 31 to give metalaaziridine 33 experimental

C-H activation in 35 to give metallaaziridine 37. Computed relative free energies given in kcal mol .

C-H activation in rhodium- and iridium-NHC complexes.

C-H activation in ruthenium-NHC complexes.

C-H activation in S-aUcenyl sulfoximines

C-H activation in the wingtip group of a ruthenium NHC complex.

C-H activation in TpLnNHC complexes .

C-H activation mechanism in liquid Kr.

C-H activation of a ligand side chain by rare earth NHC complexes.

C-H activation of a phenyl wingtip group.



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