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Electronic Structure Analysis of the Oxygen-Activation Mechanism by Fe II - and α-Ketoglutarate (αKG)-Dependent Dioxygenases
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Microperoxidase 11: a model system for porphyrin networks and heme–protein interactions
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July 2009 |
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Oxygen activation by cytochrome P450 monooxygenase
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High-valent oxomanganese clusters: structural and mechanistic work relevant to the oxygen-evolving center in photosystem II
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October 1995 |
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Hydrogen bonds and proton transfer in general-catalytic transition-state stabilization in enzyme catalysis
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May 2000 |
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The superfamily of heme–copper oxygen reductases: Types and evolutionary considerations
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April 2012 |
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Nitrogenase reduction of carbon-containing compounds
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August 2013 |
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Photosystem II repair in plant chloroplasts — Regulation, assisting proteins and shared components with photosystem II biogenesis
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September 2015 |
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[FeFe]- and [NiFe]-hydrogenase diversity, mechanism, and maturation
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June 2015 |
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Electrocatalytic CO2 reduction catalyzed by nitrogenase MoFe and FeFe proteins
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April 2018 |
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Photocatalytic hydrogen evolution by a diiron hydrogenase model based on a peptide fragment of cytochrome c556 with an attached diiron carbonyl cluster and an attached ruthenium photosensitizer
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March 2012 |
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Structure of the catalytic, inorganic core of oxygen-evolving photosystem II at 1.9Å resolution
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July 2011 |
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Molecular Catalysts for Water Oxidation
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July 2015 |
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Oxygen Reduction by Homogeneous Molecular Catalysts and Electrocatalysts
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December 2017 |
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Semisynthetic and Biomolecular Hydrogen Evolution Catalysts
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November 2015 |
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Hydrogen Evolution from Water under Aerobic Conditions Catalyzed by a Cobalt ATCUN Metallopeptide
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January 2016 |
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An Iron Electrocatalyst for Selective Reduction of CO 2 to Formate in Water: Including Thermochemical Insights
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November 2015 |
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Improved Electro- and Photocatalytic Water Reduction by Confined Cobalt Catalysts in Streptavidin
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May 2019 |
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Pendant Hydrogen-Bond Donors in Cobalt Catalysts Independently Enhance CO 2 Reduction
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February 2018 |
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Nitrogenase: A Draft Mechanism
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December 2012 |
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Hydrogen Evolution Catalyzed by Cobaloximes
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Amino Terminal Cu(II)- and Ni(II)-Binding (ATCUN) Motif of Proteins and Peptides: Metal Binding, DNA Cleavage, and Other Properties
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Carbonyl sulfide and carbon dioxide as new substrates, and carbon disulfide as a new inhibitor, of nitrogenase
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Oxygen-18 kinetic isotope effects in the dopamine .beta.-monooxygenase reaction: Evidence for a new chemical mechanism in non-heme, metallomonooxygenase
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Understanding the Role of the Essential Asp251 in Cytochrome P450cam Using Site-Directed Mutagenesis, Crystallography, and Kinetic Solvent Isotope Effect †
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June 1998 |
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[NiFe] and [FeFe] Hydrogenases Studied by Advanced Magnetic Resonance Techniques
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October 2007 |
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Proton-Coupled Electron Flow in Protein Redox Machines
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December 2010 |
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Frontiers, Opportunities, and Challenges in Biochemical and Chemical Catalysis of CO 2 Fixation
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June 2013 |
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Heme Enzyme Structure and Function
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January 2014 |
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Structure, Function, and Mechanism of the Nickel Metalloenzymes, CO Dehydrogenase, and Acetyl-CoA Synthase
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February 2014 |
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Hydrogenases
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March 2014 |
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Biochemistry and Theory of Proton-Coupled Electron Transfer
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January 2014 |
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Heme/Copper Terminal Oxidases
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January 1996 |
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Theoretical Analysis of Cobalt Hangman Porphyrins: Ligand Dearomatization and Mechanistic Implications for Hydrogen Evolution
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November 2014 |
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Damage Management in Water-Oxidizing Catalysts: From Photosystem II to Nanosized Metal Oxides
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February 2015 |
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Cobalt-catalyzed evolution of molecular hydrogen
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July 1986 |
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Copper Hydroperoxo Species Activated by Hydrogen-Bonding Interaction with Its Distal Oxygen
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November 2003 |
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Evaluation of Homogeneous Electrocatalysts by Cyclic Voltammetry
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September 2014 |
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Cobaloxime-Based Artificial Hydrogenases
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July 2014 |
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Hydride Binding to the Active Site of [FeFe]-Hydrogenase
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October 2014 |
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From Myoglobin to Heme-Copper Oxidase: Design and Engineering of a Cu B Center into Sperm Whale Myoglobin
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August 2000 |
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Electrocatalytic reduction of carbon dioxide by using macrocycles of nickel and cobalt
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September 1980 |
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Hydrogen Oxidation and Production Using Nickel-Based Molecular Catalysts with Positioned Proton Relays
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Structure and Valency of a Cobalt−Phosphate Water Oxidation Catalyst Determined by in Situ X-ray Spectroscopy
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October 2010 |
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Catalytic Reduction of Dioxygen to Water with a Monomeric Manganese Complex at Room Temperature
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April 2011 |
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Original Design of an Oxygen-Tolerant [NiFe] Hydrogenase: Major Effect of a Valine-to-Cysteine Mutation near the Active Site
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February 2011 |
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Hydrogen Generation by Hangman Metalloporphyrins
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June 2011 |
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A Photocatalyst–Enzyme Coupled Artificial Photosynthesis System for Solar Energy in Production of Formic Acid from CO 2
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July 2012 |
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Understanding and Tuning the Catalytic Bias of Hydrogenase
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May 2012 |
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Hydrogen Evolution from Neutral Water under Aerobic Conditions Catalyzed by Cobalt Microperoxidase-11
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December 2013 |
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A Biomimetic Copper Water Oxidation Catalyst with Low Overpotential
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December 2013 |
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Versatile Photocatalytic Systems for H 2 Generation in Water Based on an Efficient DuBois-Type Nickel Catalyst
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December 2013 |
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Enhanced Oxygen-Tolerance of the Full Heterotrimeric Membrane-Bound [NiFe]-Hydrogenase of Ralstonia eutropha
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June 2014 |
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Pendant Acid–Base Groups in Molecular Catalysts: H-Bond Promoters or Proton Relays? Mechanisms of the Conversion of CO 2 to CO by Electrogenerated Iron(0)Porphyrins Bearing Prepositioned Phenol Functionalities
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August 2014 |
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Mechanistic Insights into Catalytic H 2 Oxidation by Ni Complexes Containing a Diphosphine Ligand with a Positioned Amine Base
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April 2009 |
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Homogeneous Catalysis of Electrochemical Hydrogen Evolution by Iron(0) Porphyrins
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January 1996 |
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Ammonia Binds to the Dangler Manganese of the Photosystem II Oxygen-Evolving Complex
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July 2015 |
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Proton-Assisted Reduction of CO 2 by Cobalt Aminopyridine Macrocycles
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April 2016 |
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Tetranuclear Manganese Models of the OEC Displaying Hydrogen Bonding Interactions: Application to Electrocatalytic Water Oxidation to Hydrogen Peroxide
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June 2017 |
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Phenol-Induced O–O Bond Cleavage in a Low-Spin Heme–Peroxo–Copper Complex: Implications for O 2 Reduction in Heme–Copper Oxidases
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June 2017 |
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Peroxide Activation Regulated by Hydrogen Bonds within Artificial Cu Proteins
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November 2017 |
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Artificial Metalloproteins Containing Co 4 O 4 Cubane Active Sites
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February 2018 |
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Rational Design of Mononuclear Iron Porphyrins for Facile and Selective 4e – /4H + O 2 Reduction: Activation of O–O Bond by 2nd Sphere Hydrogen Bonding
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July 2018 |
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Oxygen-Tolerant H 2 Production by [FeFe]-H 2 ase Active Site Mimics Aided by Second Sphere Proton Shuttle
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September 2018 |
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Redox Reactivity of a Mononuclear Manganese-Oxo Complex Binding Calcium Ion and Other Redox-Inactive Metal Ions
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December 2018 |
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Investigating the Kinetic Mechanisms of the Oxygen Reduction Reaction in a Nonaqueous Solvent
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September 2014 |
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Proton-Coupled Electron Transfer in Solution, Proteins, and Electrochemistry †
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November 2008 |
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The iron–oxygen bond in human oxyhaemoglobin
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April 1982 |
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Native structure of photosystem II at 1.95 Å resolution viewed by femtosecond X-ray pulses
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November 2014 |
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Why copper is preferred over iron for oxygen activation and reduction in haem-copper oxidases
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November 2016 |
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A biosynthetic model of cytochrome c oxidase as an electrocatalyst for oxygen reduction
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October 2015 |
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The complex architecture of oxygenic photosynthesis
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December 2004 |
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Designing electrochemically reversible H2 oxidation and production catalysts
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August 2018 |
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A bioinspired soluble manganese cluster as a water oxidation electrocatalyst with low overpotential
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November 2017 |
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Protein secondary-shell interactions enhance the photoinduced hydrogen production of cobalt protoporphyrin IX
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January 2014 |
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Design and engineering of artificial oxygen-activating metalloenzymes
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January 2016 |
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A pendant proton shuttle on [Fe 4 N(CO) 12 ] − alters product selectivity in formate vs. H 2 production via the hydride [H–Fe 4 N(CO) 12 ] −
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January 2016 |
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An internal electron reservoir enhances catalytic CO 2 reduction by a semisynthetic enzyme
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January 2016 |
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Evaluating the role of acidic, basic, and polar amino acids and dipeptides on a molecular electrocatalyst for H 2 oxidation
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January 2017 |
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A comprehensive review of Pt electrocatalysts for the oxygen reduction reaction: Nanostructure, activity, mechanism and carbon support in PEM fuel cells
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January 2017 |
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Thermodynamic assessment of the oxygen reduction activity in aqueous solutions
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January 2017 |
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Structural models of the biological oxygen-evolving complex: achievements, insights, and challenges for biomimicry
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January 2017 |
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Hydrogen evolution from water catalyzed by cobalt-mimochrome VI*a, a synthetic mini-protein
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January 2018 |
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Influence of intramolecular secondary sphere hydrogen-bonding interactions on cytochrome c oxidase inspired low-spin heme–peroxo–copper complexes
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January 2019 |
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Structural changes in the Mn4Ca cluster and the mechanism of photosynthetic water splitting
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February 2008 |
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Structure of the 2 2 Ni-dependent CO dehydrogenase component of the Methanosarcina barkeri acetyl-CoA decarbonylase/synthase complex
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The proton donor for OO bond scission by cytochrome c oxidase
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July 2008 |
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Role of pendant proton relays and proton-coupled electron transfer on the hydrogen evolution reaction by nickel hangman porphyrins
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October 2014 |
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Amino acid modified Ni catalyst exhibits reversible H 2 oxidation/production over a broad pH range at elevated temperatures
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November 2014 |
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Nickel phlorin intermediate formed by proton-coupled electron transfer in hydrogen evolution mechanism
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December 2015 |
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Frequency and potential dependence of reversible electrocatalytic hydrogen interconversion by [FeFe]-hydrogenases
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March 2017 |
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Dioxygen activation and bond cleavage by mixed-valence cytochrome c oxidase
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July 1998 |
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Probing Protonation/Deprotonation of Tyrosine Residues in Cytochrome ba3 Oxidase from Thermus thermophilus by Time-resolved Step-scan Fourier Transform Infrared Spectroscopy
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Importance of the Protein Framework for Catalytic Activity of [FeFe]-Hydrogenases
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November 2011 |
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Vanadium Nitrogenase Reduces CO
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August 2010 |
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A Local Proton Source Enhances CO 2 Electroreduction to CO by a Molecular Fe Catalyst
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Proton-Pumping Mechanism of Cytochrome c Oxidase
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Electrochemical Hydrogen Evolution by Cobalt (II) Porphyrins: Effects of Ligand Modification on Catalytic Activity, Efficiency and Overpotential
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January 2018 |