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Vibrational Analysis of Mononitrosyl Complexes in Hemerythrin and Flavodiiron Proteins: Relevance to Detoxifying NO Reductase
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April 2012 |
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A bioinspired iron catalyst for nitrate and perchlorate reduction
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November 2016 |
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Nitrosyl Linkage Isomers: NO Coupling to N 2 O at a Mononuclear Site
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December 2018 |
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Spectroscopic and Theoretical Description of the Electronic Structure of S = 3/2 Iron-Nitrosyl Complexes and Their Relation to O2 Activation by Non-Heme Iron Enzyme Active Sites
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January 1995 |
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Generation, Translocation, and Action of Nitric Oxide in Living Systems
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October 2011 |
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The Functional Model Complex [Fe 2 (BPMP)(OPr)(NO) 2 ](BPh 4 ) 2 Provides Insight into the Mechanism of Flavodiiron NO Reductases
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March 2013 |
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A Mononuclear, Nonheme FeII–Piloty’s Acid (PhSO2NHOH) Adduct: An Intermediate in the Production of {FeNO}7/8 Complexes from Piloty’s Acid
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April 2019 |
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Effect of Outer-Sphere Side Chain Substitutions on the Fate of the trans Iron–Nitrosyl Dimer in Heme/Nonheme Engineered Myoglobins (Fe B Mbs): Insights into the Mechanism of Denitrifying NO Reductases
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March 2016 |
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Cytochrome P450nor: A nitric oxide reductase?Structure, spectra, and mechanism
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A Stable Hyponitrite-Bridged Iron Porphyrin Complex
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The dual function of flavodiiron proteins: oxygen and/or nitric oxide reductases
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January 2016 |
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Insights into the Nitric Oxide Reductase Mechanism of Flavodiiron Proteins from a Flavin-Free Enzyme
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August 2010 |
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Dicopper μ-Oxo, μ-Nitrosyl Complex from the Activation of NO or Nitrite at a Dicopper Center
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May 2019 |
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Preparation of Non-heme {FeNO} 7 Models of Cysteine Dioxygenase: Sulfur versus Nitrogen Ligation and Photorelease of Nitric Oxide
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September 2013 |
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A Nonheme Sulfur-Ligated {FeNO} 6 Complex and Comparison with Redox-Interconvertible {FeNO} 7 and {FeNO} 8 Analogues
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September 2018 |
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Synthetic Modeling Chemistry of Iron–Sulfur Clusters in Nitric Oxide Signaling
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July 2015 |
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Characterization of the Bridged Hyponitrite Complex {[Fe(OEP)] 2 (μ-N 2 O 2 )}: Reactivity of Hyponitrite Complexes and Biological Relevance
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June 2014 |
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Nitric oxide binding at the mononuclear active site of reduced Pyrococcus furiosus superoxide reductase
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March 2003 |
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Flavodiiron nitric oxide reductases: Recent developments in the mechanistic study and model chemistry for the catalytic reduction of NO
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January 2015 |
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Novel non-heme iron center of nitrile hydratase with a claw setting of oxygen atoms
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May 1998 |
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Mononuclear, Nonheme, High-Spin {FeNO} 7/8 Complexes Supported by a Sterically Encumbered N 4 S-Thioether Ligand
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July 2019 |
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Direct NO Reduction by a Biomimetic Iron(II) Pyrazolate MOF
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August 2021 |
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Coordination Chemistry of Silanedithiolato Ligands Derived from Cyclotrisilathiane: Synthesis and Structures of Complexes of Iron(II), Cobalt(II), Palladium(II), Copper(I), and Silver(I)
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July 2003 |
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Functional Models for the Mono- and Dinitrosyl Intermediates of FNORs: Semireduction versus Superreduction of NO
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March 2020 |
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S K-Edge X-Ray Absorption Spectroscopy and Density Functional Theory Studies of High and Low Spin {FeNO}7 Thiolate Complexes: Exchange Stabilization of Electron Delocalization in {FeNO}7 and {FeO2}8
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December 2010 |
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Sulfur K-Edge XAS and DFT Calculations on Nitrile Hydratase: Geometric and Electronic Structure of the Non-heme Iron Active Site
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January 2006 |
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Lewis Acid Activation of the Ferrous Heme–NO Fragment toward the N–N Coupling Reaction with NO To Generate N 2 O
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February 2018 |
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Electronic Effects of (N2S2)M(NO) Complexes (M = Fe, Co) as Metallodithiolate Ligands
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February 2008 |
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The Semireduced Mechanism for Nitric Oxide Reduction by Non-Heme Diiron Complexes: Modeling Flavodiiron Nitric Oxide Reductases
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February 2018 |
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Copper(I)/NO (g) Reductive Coupling Producing a trans -Hyponitrite Bridged Dicopper(II) Complex: Redox Reversal Giving Copper(I)/NO (g) Disproportionation
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September 2017 |
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A Nonheme, High-Spin {FeNO} 8 Complex that Spontaneously Generates N 2 O
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July 2017 |
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Structure, Function, and Formation of Biological Iron-Sulfur Clusters
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June 2005 |
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Functional Mononitrosyl Diiron(II) Complex Mediates the Reduction of NO to N 2 O with Relevance for Flavodiiron NO Reductases
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September 2017 |
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Photoinitiated Reactivity of a Thiolate-Ligated, Spin-Crossover Nonheme {FeNO} 7 Complex with Dioxygen
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February 2016 |
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Crystal Structure of Iron(II) Acetate
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December 2010 |
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Light-Induced N 2 O Production from a Non-heme Iron–Nitrosyl Dimer
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August 2014 |
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Non-Heme Diiron Model Complexes Can Mediate Direct NO Reduction: Mechanistic Insight into Flavodiiron NO Reductases
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September 2018 |
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NO Reduction to N 2 O Triggered by a Dinuclear Dinitrosyl Iron Complex via the Associated Pathways of Hyponitrite Formation and NO Disproportionation
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May 2021 |
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Nature of the Observed Asymmetry in Mössbauer Spectra of Iron (2+) Hexacyanometallates (III)
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June 2009 |
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Reductive N–N coupling of NO molecules on transition metal complexes leading to N2O
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March 2012 |
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NO-to-[N 2 O 2 ] 2– -to-N 2 O Conversion Triggered by {Fe(NO) 2 } 10 -{Fe(NO) 2 } 9 Dinuclear Dinitrosyl Iron Complex
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July 2019 |
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Nitric Oxide Activation by Distal Redox Modulation in Tetranuclear Iron Nitrosyl Complexes
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November 2015 |
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Analysis of asymmetry of the Mössbauer bands of FexZn1−x(4-amino-1,2,4-Triazole)3(NO3)2 complexes with the spin transition1 A 1 ⇄5 T 2 proof of anisotropy of iron atom vibrationsproof of anisotropy of iron atom vibrations
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January 1995 |
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Effect of the damping function in dispersion corrected density functional theory
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March 2011 |
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Formation of N 2 O from a Nickel Nitrosyl: Isolation of the cis -[N 2 O 2 ] 2– Intermediate
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June 2012 |
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A Nonheme Mononuclear {FeNO} 7 Complex that Produces N 2 O in the Absence of an Exogenous Reductant
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August 2021 |
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Copper(I) Complex Mediated Nitric Oxide Reductive Coupling: Ligand Hydrogen Bonding Derived Proton Transfer Promotes N 2 O (g) Release
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October 2019 |
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Nitric Oxide in Biological Denitrification: Fe/Cu Metalloenzyme and Metal Complex NO x Redox Chemistry
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April 2002 |
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Mechanism of N–N Bond Formation by Transition Metal–Nitrosyl Complexes: Modeling Flavodiiron Nitric Oxide Reductases
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March 2018 |
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Recent Advances and Promises in Nitrile Hydratase: From Mechanism to Industrial Applications
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April 2020 |
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Fungal denitrification and nitric oxide reductase cytochrome P450nor
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May 2012 |
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A Diferrous-Dinitrosyl Intermediate in the N 2 O-Generating Pathway of a Deflavinated Flavo-Diiron Protein
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August 2014 |
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A Monohydrosulfidodinitrosyldiiron Complex That Generates N 2 O as a Model for Flavodiiron Nitric Oxide Reductases: Reaction Mechanism and Electronic Structure
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June 2021 |
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Biological and Bioinspired Inorganic N–N Bond-Forming Reactions
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February 2020 |
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Activation of Dioxygen by a Mononuclear Nonheme Iron Complex: Sequential Peroxo, Oxo, and Hydroxo Intermediates
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October 2019 |
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Reductive Transformations of a Pyrazolate-Based Bioinspired Diiron–Dinitrosyl Complex
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October 2016 |
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Principles of structure, bonding, and reactivity for metal nitrosyl complexes
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September 1974 |
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A consistent and accurate ab initio parametrization of density functional dispersion correction (DFT-D) for the 94 elements H-Pu
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NO Disproportionation at a Mononuclear Site-Isolated Fe 2+ Center in Fe 2+ -MOF-5
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June 2015 |
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Flavo-diiron enzymes: nitric oxide or dioxygen reductases?
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January 2007 |
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ATHENA , ARTEMIS , HEPHAESTUS : data analysis for X-ray absorption spectroscopy using IFEFFIT
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June 2005 |
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Facile Nitrite Reduction in a Non-heme Iron System: Formation of an Iron(III)-Oxo
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December 2014 |
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The Production of Nitrous Oxide by the Heme/Nonheme Diiron Center of Engineered Myoglobins (Fe B Mbs) Proceeds through a trans -Iron-Nitrosyl Dimer
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January 2014 |
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Heme/O 2 /•NO Nitric Oxide Dioxygenase (NOD) Reactivity: Phenolic Nitration via a Putative Heme-Peroxynitrite Intermediate
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July 2009 |
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Interplay between iron complexes, nitric oxide and sulfur ligands: Structure, (photo)reactivity and biological importance
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Synthesis, magnetic properties, and Mössbauer spectra of polynuclear iron carboxylates
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January 1977 |
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The ORCA program system: The ORCA program system
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Reductive Nitric Oxide Coupling at a Dinickel Core: Isolation of a Key cis -Hyponitrite Intermediate en route to N 2 O Formation
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January 2019 |
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Gol’danskii–Karyagin effect and induced fieldsin rare earth-transition metal stannides
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February 2006 |
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Mono- and dinuclear non-heme iron–nitrosyl complexes: Models for key intermediates in bacterial nitric oxide reductases
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January 2013 |
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Multiple-scattering calculations of x-ray-absorption spectra
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July 1995 |