Functional models for the oxygen-evolving complex of photosystem II
2007/06/11 by Clyde W. Cady, Robert H. Crabtree, Gary W. Brudvig · 26 citations
Biochemistry, Genetics and Molecular Biology · Chemistry · Neuroscience · Physics and Astronomy · #Biochemistry #Chemical physics #Chemistry #Organic chemistry #Oxygen #Oxygen evolution #Oxygen-evolving complex #Photoreceptor and optogenetics research #Photosynthesis #Photosynthetic Processes and Mechanisms #Photosystem #Photosystem II #Physical chemistry #Spectroscopy and Quantum Chemical Studies
paper · doi:10.1016/j.ccr.2007.06.002
openalex publication_date 2007/06/11 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/26
Cited by
- Mn4Ca Cluster in Photosynthesis: Where and How Water is Oxidized to Dioxygen
- Why did Nature choose manganese to make oxygen? [europepmc]
- Highly active and robust Cp* iridium complexes for catalytic water oxidation. [europepmc]
- [(H2O)(terpy)Mn(mu-O)2Mn(terpy)(OH2)](NO3)3 (terpy = 2,2':6,2''-terpyridine) and its relevance to the oxygen-evolving complex of photosystem II examined through pH dependent cyclic voltammetry. [europepmc]
- Energy conversion in natural and artificial photosynthesis. [europepmc]
- Characterization of proton coupled electron transfer in a biomimetic oxomanganese complex: Evaluation of the DFT B3LYP level of theory. [europepmc]
- Study of Proton Coupled Electron Transfer in a Biomimetic Dimanganese Water Oxidation Catalyst with Terminal Water Ligands. [europepmc]
- The effects of redox-inactive metal ions on the activation of dioxygen: isolation and characterization of a heterobimetallic complex containing a Mn(III)-(μ-OH)-Ca(II) core. [europepmc]
- Preparation and properties of a monomeric high-spin Mn(V)-oxo complex. [europepmc]
- Oxomanganese complexes for natural and artificial photosynthesis. [europepmc]
- Multicopper oxidase involvement in both Mn(II) and Mn(III) oxidation during bacterial formation of MnO(2). [europepmc]
- Assembly and properties of heterobimetallic Co(II/III)/Ca(II) complexes with aquo and hydroxo ligands. [europepmc]
- Electrostatic effects on proton coupled electron transfer in oxomanganese complexes inspired by the oxygen-evolving complex of photosystem II. [europepmc]
- Electronic structural changes of Mn in the oxygen-evolving complex of photosystem II during the catalytic cycle. [europepmc]
- An anionic N-donor ligand promotes manganese-catalyzed water oxidation. [europepmc]
- Heterobimetallic Complexes with M III -( μ- OH)-M II Cores (M III = Fe, Mn, Ga; M II = Ca, Sr, and Ba): Structural, Kinetic, and Redox Properties. [europepmc]
- Characterization of monomeric Mn(II/III/IV)-hydroxo complexes from X- and Q-band dual mode electron paramagnetic resonance (EPR) spectroscopy. [europepmc]
- Photochemical oxidation of a manganese(III) complex with oxygen and toluene derivatives to form a manganese(V)-oxo complex. [europepmc]
- Synthetic cluster models of biological and heterogeneous manganese catalysts for O2 evolution. [europepmc]
- Ligand modification transforms a catalase mimic into a water oxidation catalyst. [europepmc]
- Light-driven water oxidation for solar fuels. [europepmc]
- Visualization of Host-Polerovirus Interaction Topologies Using Protein Interaction Reporter Technology. [europepmc]
- Critical Aspects of Heme-Peroxo-Cu Complex Structure and Nature of Proton Source Dictate Metal-O(peroxo) Breakage versus Reductive O-O Cleavage Chemistry. [europepmc]
- Tetranuclear Manganese Models of the OEC Displaying Hydrogen Bonding Interactions: Application to Electrocatalytic Water Oxidation to Hydrogen Peroxide. [europepmc]
- Manganese-based Materials Inspired by Photosynthesis for Water-Splitting. [europepmc]
- Rejigging Electron and Proton Transfer to Transition between Dioxygenase, Monooxygenase, Peroxygenase, and Oxygen Reduction Activity: Insights from Bioinspired Constructs of Heme Enzymes. [europepmc]