575 - 575 |
Introduction to Selective Functionalization of C-H Bonds Crabtree RH |
576 - 623 |
Cyclometalation Using d-Block Transition Metals: Fundamental Aspects and Recent Trends Albrecht M |
624 - 655 |
Rhodium-Catalyzed C-C Bond Formation via Heteroatom-Directed C-H Bond Activation Colby DA, Bergman RG, Ellman JA |
656 - 680 |
C-H Bond Activation and Organometallic Intermediates on Isolated Metal Centers on Oxide Surfaces Coperet C |
681 - 703 |
Dehydrogenation as a Substrate-Activating Strategy in Homogeneous Transition-Metal Catalysis Dobereiner GE, Crabtree RH |
704 - 724 |
Catalytic Carbene Insertion into C-H Bonds Doyle MP, Duffy R, Ratnikov M, Zhou L |
725 - 748 |
Transition Metal Catalyzed Alkene and Alkyne Hydroacylation Willis MC |
749 - 823 |
C-H Bond Activation in Transition Metal Species from a Computational Perspective Balcells D, Clot E, Eisenstein O |
824 - 889 |
Emergence of Palladium(IV) Chemistry in Synthesis and Catalysis Sehnal P, Taylor RJK, Fairlamb IJS |
890 - 931 |
C-H Activation for the Construction of C-B Bonds Mkhalid IAI, Barnard JH, Marder TB, Murphy JM, Hartwig JF |
932 - 948 |
Hydrocarbon Hydroxylation by Cytochrome P450 Enzymes de Montellano PRO |
949 - 1017 |
P450 Enzymes: Their Structure, Reactivity, and Selectivity-Modeled by QM/MM Calculations Shaik S, Cohen S, Wang Y, Chen H, Kumar D, Thiel W |
1018 - 1059 |
Activation of DNA Carbon-Hydrogen Bonds by Metal Complexes Pitie M, Pratviel G |
1060 - 1081 |
C-H Bond Activations by Metal Oxo Compounds Gunay A, Theopold KH |
1082 - 1146 |
Transition Metal-Catalyzed Direct Arylation of Substrates with Activated sp(3)-Hybridized C-H Bonds and Some of Their Synthetic Equivalents with Aryl Halides and Pseudohalides Bellina F, Rossi R |
1147 - 1169 |
Palladium-Catalyzed Ligand-Directed C-H Functionalization Reactions Lyons TW, Sanford MS |
1170 - 1211 |
Selective Activation of Alkanes by Gas-Phase Metal Ions Roithova J, Schroder D |