Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 107 checked references that resolve
resolves10.1038/nature09913Crystal structure of oxygen-evolving photosystem II at a resolution of 1.9 Å
resolves10.1021/ar900249xDevelopment of Bioinspired Mn<sub>4</sub>O<sub>4</sub>−Cubane Water Oxidation Catalysts: Lessons from Photosynthesis
resolves10.1021/cr400572fArtificial Photosynthesis: Molecular Systems for Catalytic Water Oxidation
resolves10.1002/cctc.201000126The Mechanism of Water Oxidation: From Electrolysis via Homogeneous to Biological Catalysis
resolves10.1126/science.1162018In Situ Formation of an Oxygen-Evolving Catalyst in Neutral Water Containing Phosphate and Co
<sup>2+</sup>
resolves10.1021/ja8059649One Site is Enough. Catalytic Water Oxidation by [Ru(tpy)(bpm)(OH<sub>2</sub>)]<sup>2+</sup> and [Ru(tpy)(bpz)(OH<sub>2</sub>)]<sup>2+</sup>
resolves10.1038/nchem.1301A molecular ruthenium catalyst with water-oxidation activity comparable to that of photosystem II
resolves10.1021/ic401023wWater Oxidation with Mononuclear Ruthenium(II) Polypyridine Complexes Involving a Direct Ru<sup>IV</sup>═O Pathway in Neutral and Alkaline Media
resolves10.1021/ja901373mHomogeneous Light-Driven Water Oxidation Catalyzed by a Tetraruthenium Complex with All Inorganic Ligands
resolves10.1002/anie.201210226A Tailor‐Made Molecular Ruthenium Catalyst for the Oxidation of Water and Its Deactivation through Poisoning by Carbon Monoxide
resolves10.1002/ange.201210226A Tailor‐Made Molecular Ruthenium Catalyst for the Oxidation of Water and Its Deactivation through Poisoning by Carbon Monoxide
resolves10.1021/ic500709hNew Water Oxidation Chemistry of a Seven-Coordinate Ruthenium Complex with a Tetradentate Polypyridyl Ligand
resolves10.1021/ja203249eWater Oxidation by a Mononuclear Ruthenium Catalyst: Characterization of the Intermediates
resolves10.1021/ja2024965Catalytic Mechanism of Water Oxidation with Single-Site Ruthenium–Heteropolytungstate Complexes
resolves10.1021/ic200050gWater Oxidation by Mononuclear Ruthenium Complexes with TPA-Based Ligands
resolves10.1021/ja808166dOxygen−Oxygen Bond Formation by the Ru-Hbpp Water Oxidation Catalyst Occurs Solely via an Intramolecular Reaction Pathway
resolves10.1021/ic8014817Mononuclear Ruthenium(II) Complexes That Catalyze Water Oxidation
resolves10.1021/ja309805mToward Controlling Water Oxidation Catalysis: Tunable Activity of Ruthenium Complexes with Axial Imidazole/DMSO Ligands
resolves10.1021/ja106108yElectronic Modification of the [Ru<sup>II</sup>(tpy)(bpy)(OH<sub>2</sub>)]<sup>2+</sup> Scaffold: Effects on Catalytic Water Oxidation
resolves10.1039/c0dt01826kHighly active and tunable catalysts for O2 evolution from water based on mononuclear ruthenium(ii) monoaquo complexes
resolves10.1021/ja202138mElectocatalytic Water Oxidation by Cobalt(III) Hangman β-Octafluoro Corroles
resolves10.1073/pnas.1315383110Efficient water oxidation catalyzed by homogeneous cationic cobalt porphyrins with critical roles for the buffer base
resolves10.1021/ja205647mElectrochemical Water Oxidation with Cobalt-Based Electrocatalysts from pH 0–14: The Thermodynamic Basis for Catalyst Structure, Stability, and Activity
resolves10.1039/c2ee21840bA cobalt(ii) quaterpyridine complex as a visible light-driven catalyst for both water oxidation and reduction
resolves10.1021/ja203877yA Co<sub>4</sub>O<sub>4</sub> “Cubane” Water Oxidation Catalyst Inspired by Photosynthesis
resolves10.1039/c0cc05522kElectrochemical evidence for catalytic water oxidation mediated by a high-valent cobalt complex
resolves10.1126/science.1185372A Fast Soluble Carbon-Free Molecular Water Oxidation Catalyst Based on Abundant Metals
resolves10.1039/C4EE03234ABio-inspired organic cobalt(
<scp>ii</scp>
) phosphonates toward water oxidation
resolves10.1021/ja109681dEfficient Light-Driven Carbon-Free Cobalt-Based Molecular Catalyst for Water Oxidation
resolves10.1021/jacs.6b00737Conduction and Reactivity in Heterogeneous-Molecular Catalysis: New Insights in Water Oxidation Catalysis by Phosphate Cobalt Oxide Films
resolves10.1039/C6CC05773JElectrocatalytic water oxidation by a molecular cobalt complex through a high valent cobalt oxo intermediate
resolves10.1021/ja910055aSolar Driven Water Oxidation by a Bioinspired Manganese Molecular Catalyst
resolves10.1016/j.ccr.2007.07.021Reflections on small molecule manganese models that seek to mimic photosynthetic water oxidation chemistry
resolves10.1039/c1cc13895bSelf-assembled layered hybrid [Ru(bpy)3]2+/manganese(iii,iv) oxide: a new and efficient strategy for water oxidation
resolves10.1021/ja901139rNucleophilic Attack of Hydroxide on a Mn
<sup>V</sup>
Oxo Complex: A Model of the O−O Bond Formation in the Oxygen Evolving Complex of Photosystem II
resolves10.1021/ic400691eAn Anionic N-Donor Ligand Promotes Manganese-Catalyzed Water Oxidation
resolves10.1039/dt9850001391Water photolysis. Part 1. The photolysis of co-ordinated water in [{MnL(H2O)}2][ClO4]2(L = dianion of tetradentate O2N2-donor Schiff bases). A model for the manganese site in photosystem II of green plant photosynthesis
resolves10.1039/c0dt01362eOn the mechanism of water oxidation by a bimetallic manganese catalyst: A density functional study
resolves10.1021/acs.inorgchem.5b00924Electrocatalytic Water Oxidation by a Water-Soluble Nickel Porphyrin Complex at Neutral pH with Low Overpotential
resolves10.1002/anie.201406983Homogeneous Electrocatalytic Water Oxidation at Neutral pH by a Robust Macrocyclic Nickel(II) Complex
resolves10.1002/ange.201406983Homogeneous Electrocatalytic Water Oxidation at Neutral pH by a Robust Macrocyclic Nickel(II) Complex
resolves10.1021/ja074478fCyclometalated Iridium(III) Aquo Complexes: Efficient and Tunable Catalysts for the Homogeneous Oxidation of Water
resolves10.1021/ja901270fHighly Active and Robust Cp* Iridium Complexes for Catalytic Water Oxidation
resolves10.1002/anie.201005260Water Oxidation Catalyzed by Strong Carbene‐Type Donor‐Ligand Complexes of Iridium
resolves10.1002/ange.201005260Katalytische Oxidation von Wasser durch einen Iridiumkomplex mit einem starken Carben‐Donorliganden
resolves10.1002/anie.201407131Single‐Site Copper(II) Water Oxidation Electrocatalysis: Rate Enhancements with HPO<sub>4</sub><sup>2−</sup> as a Proton Acceptor at pH 8
resolves10.1002/ange.201407131Single‐Site Copper(II) Water Oxidation Electrocatalysis: Rate Enhancements with HPO<sub>4</sub><sup>2−</sup> as a Proton Acceptor at pH 8
resolves10.1021/ja409267pA Biomimetic Copper Water Oxidation Catalyst with Low Overpotential
resolves10.1021/jacs.5b03977Redox Non-innocent Ligand Controls Water Oxidation Overpotential in a New Family of Mononuclear Cu-Based Efficient Catalysts
resolves10.1002/chem.201504066A Water‐Soluble Copper–Polypyridine Complex as a Homogeneous Catalyst for both Photo‐Induced and Electrocatalytic O<sub>2</sub> Evolution
resolves10.1038/ncomms6865Evidence for an oxygen evolving iron–oxo–cerium intermediate in iron-catalysed water oxidation
resolves10.1038/nchem.1140Efficient water oxidation catalysts based on readily available iron coordination complexes
resolves10.1002/ejic.201201499Incorporation of Hydrogen‐Bonding Functionalities into the Second Coordination Sphere of Iron‐Based Water‐Oxidation Catalysts
resolves10.1021/ic401180rWater Oxidation Catalysis with Nonheme Iron Complexes under Acidic and Basic Conditions: Homogeneous or Heterogeneous?
resolves10.1021/ic500108gTheoretical Study of the Water Oxidation Mechanism with Non-heme Fe(Pytacn) Iron Complexes. Evidence That the Fe<sup>IV</sup>(O)(Pytacn) Species Cannot React with the Water Molecule To Form the O–O Bond
resolves10.1039/c2sc01030eQuantum chemical characterization of the mechanism of an iron-based water oxidation catalyst
resolves10.1021/ic3013359Density Functional Investigation of the Water Oxidation by Iron Complexes Based on Tetradentate Nitrogen Ligands
resolves10.1039/c2ee03241dElectrochemical approach to proton-coupled electron transfers: recent advances
resolves10.1039/C5SC01680KWater oxidation catalysed by iron complex of
<i>N</i>
,
<i>N</i>
′-dimethyl-2,11-diaza[3,3](2,6)pyridinophane. Spectroscopy of iron–oxo intermediates and density functional theory calculations
resolves10.1021/jacs.5b08856Iron Complexes of Square Planar Tetradentate Polypyridyl-Type Ligands as Catalysts for Water Oxidation
resolves10.1021/ja412822uElectrocatalytic Water Oxidation by a Monomeric Amidate-Ligated Fe(III)–Aqua Complex
resolves10.1021/ja503753kHomogeneous Photochemical Water Oxidation by Biuret-Modified Fe-TAML: Evidence of Fe<sup>V</sup>(O) Intermediate
resolves10.1021/ic503053qMechanism of Oxygen Atom Transfer from Fe<sup>V</sup>(O) to Olefins at Room Temperature
resolves10.1021/ja5015986Electrocatalytic Oxygen Evolution with an Immobilized TAML Activator
resolves10.1039/c1cc12686eFe(iii) complex of biuret-amide based macrocyclic ligand as peroxidase enzyme mimic
resolves10.1021/jacs.5b00914Benchmarking of Homogeneous Electrocatalysts: Overpotential, Turnover Frequency, Limiting Turnover Number
resolves10.1021/ja303560cTurnover Numbers, Turnover Frequencies, and Overpotential in Molecular Catalysis of Electrochemical Reactions. Cyclic Voltammetry and Preparative-Scale Electrolysis
resolves10.1002/celc.201300263Multielectron, Multistep Molecular Catalysis of Electrochemical Reactions: Benchmarking of Homogeneous Catalysts
resolves10.1002/cssc.201601286Foot of the Wave Analysis for Mechanistic Elucidation and Benchmarking Applications in Molecular Water Oxidation Catalysis
resolves10.1021/ja412537mFormation of a Room Temperature Stable Fe<sup>V</sup>(O) Complex: Reactivity Toward Unactivated C–H Bonds
resolves10.1021/ja0367344Understanding the Mechanism of H<sup>+</sup>-Induced Demetalation as a Design Strategy for Robust Iron(III) Peroxide-Activating Catalysts
resolves10.1002/chem.201406061Reactivity and Operational Stability of <i>N</i>‐Tailed TAMLs through Kinetic Studies of the Catalyzed Oxidation of Orange II by H<sub>2</sub>O<sub>2</sub>: Synthesis and X‐ray Structure of an <i>N</i>‐Phenyl TAML
resolves10.1021/cr100038yUpdate 1 of: Electrochemical Approach to the Mechanistic Study of Proton-Coupled Electron Transfer
resolves10.1073/pnas.0905020106Concerted proton-coupled electron transfers in aquo/hydroxo/oxo metal complexes: Electrochemistry of [Os
<sup>II</sup>
(bpy)
<sub>2</sub>
py(OH
<sub>2</sub>
)]
<sup>2+</sup>
in water
resolves10.1021/ic500658xEvaluation of Homogeneous Electrocatalysts by Cyclic Voltammetry
resolves10.1021/ic502535fTuning the Reactivity of Fe<sup>V</sup>(O) toward C–H Bonds at Room Temperature: Effect of Water
resolves10.1021/ja102524vDesigning Green Oxidation Catalysts for Purifying Environmental Waters
resolves10.1073/pnas.93.6.2493Visualization of intermediate and transition-state structures in protein-tyrosine phosphatase catalysis.
resolves10.1002/anie.201209116Chemical and Visible‐Light‐Driven Water Oxidation by Iron Complexes at pH 7–9: Evidence for Dual‐Active Intermediates in Iron‐Catalyzed Water Oxidation
resolves10.1002/ange.201209116Chemical and Visible‐Light‐Driven Water Oxidation by Iron Complexes at pH 7–9: Evidence for Dual‐Active Intermediates in Iron‐Catalyzed Water Oxidation
resolves10.1039/C5DT04467GWater oxidation by a soluble iron(
<scp>iii</scp>
)–cyclen complex: new findings
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