Role of the Secondary Coordination Sphere in Metal-Mediated Dioxygen Activation
Top Cited Papers
- 12 April 2010
- journal article
- research article
- Published by American Chemical Society (ACS) in Inorganic Chemistry
- Vol. 49 (8), 3646-3660
- https://doi.org/10.1021/ic901550k
Abstract
Alfred Werner proposed nearly 100 years ago that the secondary coordination sphere has a role in determining the physical properties of transition-metal complexes. We now know that the secondary coordination sphere impacts nearly all aspects of transition-metal chemistry, including the reactivity and selectivity in metal-mediated processes. These features are highlighted in the binding and activation of dioxygen by transition-metal complexes. There are clear connections between control of the secondary coordination sphere and the ability of metal complexes to (1) reversibly bind dioxygen or (2) bind and activate dioxygen to form highly reactive metal−oxo complexes. In this Forum Article, several biological and synthetic examples are presented and discussed in terms of structure−function relationships. Particular emphasis is given to systems with defined noncovalent interactions, such as intramolecular H-bonds involving dioxygen-derived ligands. To further illustrate these effects, the homolytic cleavage of C−H bonds by metal−oxo complexes with basic oxo ligands is described.Keywords
This publication has 118 references indexed in Scilit:
- A Synthetic High‐Spin Oxoiron(IV) Complex: Generation, Spectroscopic Characterization, and ReactivityAngewandte Chemie International Edition, 2009
- Structural Analysis of an Open Active Site Conformation of Nonheme Iron Halogenase CytC3Journal of the American Chemical Society, 2009
- C−H Bond Cleavage with Reductants: Re-Investigating the Reactivity of Monomeric MnIII/IV−Oxo Complexes and the Role of Oxo Ligand BasicityJournal of the American Chemical Society, 2009
- Lessons from nature: unraveling biological CH bond activationCurrent Opinion in Chemical Biology, 2009
- The effects of hydrogen bonds on metal-mediated O2 activation and related processesChemical Communications, 2008
- A Monomeric MnIII−Peroxo Complex Derived Directly from DioxygenJournal of the American Chemical Society, 2008
- Axial ligand tuning of a nonheme iron(IV)–oxo unit for hydrogen atom abstractionProceedings of the National Academy of Sciences, 2007
- Proton-Coupled Electron TransferChemical Reviews, 2007
- Heme-Containing OxygenasesChemical Reviews, 1996
- Structural changes upon oxygenation of an iron(II)(porphyrinato)(imidazole) complexJournal of the American Chemical Society, 1978