54 results on '"Latour, Jean-Marc"'
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2. Mixed Valence (μ‐Phenoxido) FeIIFeIII and FeIIIFeIV Compounds: Electron and Proton Transfers
3. Spin State Tunes Oxygen Atom Transfer towards Fe IV O Formation in Fe II Complexes
4. Expedient Synthesis of 2‐Iminothiazolidines via Telescoping Reactions Including Iron‐Catalyzed Nitrene Transfer and Domino Ring‐Opening Cyclization (DROC)
5. Fe‐Based Complexes as Styrene Aziridination Catalysts: Ligand Substitution Tunes Catalyst Activity
6. Selective Formation of an FeIVO or an FeIIIOOH Intermediate From Iron(II) and H2O2: Controlled Heterolytic versus Homolytic Oxygen–Oxygen Bond Cleavage by the Second Coordination Sphere
7. Selective Formation of an FeIVO or an FeIIIOOH Intermediate From Iron(II) and H2O2: Controlled Heterolytic versus Homolytic Oxygen–Oxygen Bond Cleavage by the Second Coordination Sphere
8. Redox Self-Adaptation of a Nitrene Transfer Catalyst to the Substrate Needs
9. Redox Self‐Adaptation of a Nitrene Transfer Catalyst to the Substrate Needs
10. Reactivity of a Zn(Cys)2(His)2 Zinc Finger with Singlet Oxygen: Oxidation Directed toward Cysteines but not Histidines
11. Phosphoester Hydrolysis: The Incoming Substrate Turns the Bridging Hydroxido Nucleophile into a Terminal One
12. Efficient Oxidation and Destabilization of Zn(Cys)4Zinc Fingers by Singlet Oxygen
13. Efficient Oxidation and Destabilization of Zn(Cys)4Zinc Fingers by Singlet Oxygen
14. Highly Reactive Nonheme Iron(III) Iodosylarene Complexes in Alkane Hydroxylation and Sulfoxidation Reactions
15. Highly Reactive Nonheme Iron(III) Iodosylarene Complexes in Alkane Hydroxylation and Sulfoxidation Reactions
16. A Diiron(III,IV) Imido Species Very Active in Nitrene-Transfer Reactions
17. A Diiron(III,IV) Imido Species Very Active in Nitrene-Transfer Reactions
18. Single Glutamate to Aspartate Mutation Makes Ferric Uptake Regulator (Fur) as Sensitive to H2O2 as Peroxide Resistance Regulator (PerR)
19. Single Glutamate to Aspartate Mutation Makes Ferric Uptake Regulator (Fur) as Sensitive to H2O2 as Peroxide Resistance Regulator (PerR)
20. Heme Binding Induces Dimerization and Nitration of Truncated β‐Amyloid Peptide Aβ16 Under Oxidative Stress
21. Heme Binding Induces Dimerization and Nitration of Truncated β-Amyloid Peptide Aβ16 Under Oxidative Stress
22. On the Design of Zinc-Finger Models with Cyclic Peptides Bearing a Linear Tail
23. Molecular organization, biochemical function, cellular role and evolution of NfuA, an atypical Fe‐S carrier
24. Studies of Inhibitor Binding to the [4Fe-4S] Cluster of Quinolinate Synthase
25. Studies of Inhibitor Binding to the [4Fe‐4S] Cluster of Quinolinate Synthase
26. Human mitochondrial ferritin improves respiratory function in yeast mutants deficient in iron–sulfur cluster biogenesis, but is not a functional homologue of yeast frataxin
27. Oxidation of Zn(Cys)4 Zinc Finger Peptides by O2 and H2O2: Products, Mechanism and Kinetics
28. Cooperative Metal Binding and Helical Folding in Model Peptides of Treble‐Clef Zinc Fingers
29. Cyclic Peptides Bearing a Side‐Chain Tail: A Tool to Model the Structure and Reactivity of Protein Zinc Sites
30. Cyclic Peptides Bearing a Side-Chain Tail: A Tool to Model the Structure and Reactivity of Protein Zinc Sites
31. Carboxylate Ligands Drastically Enhance the Rates of Oxo Exchange and Hydrogen Peroxide Disproportionation by Oxo Manganese Compounds of Potential Biological Significance
32. Multiple Aromatic Amination Mediated by a Diiron Complex
33. Multiple Aromatic Amination Mediated by a Diiron Complex
34. Crystal structure of the apo-PerR-Zn protein from Bacillus subtilis
35. Kinetic and Thermodynamic Studies of the Disproportionation of Hydrogen Peroxide by Dimanganese( ii,ii ) and ‐( ii,iii ) Complexes of a Bridging Phenolate Ligand
36. Catalytic Aziridination of Olefins and Amidation of Thioanisole by a Non‐Heme Iron Complex.
37. Iron Carbonyl, Nitrosyl, and Nitro Complexes of a Tetrapodal Pentadentate Amine Ligand: Synthesis, Electronic Structure, and Nitrite Reductase-like Reactivity
38. A Mössbauer Study of [Fe(edta)(O2)]3−Agrees with a High-Spin FeIII Peroxo Complex
39. A Novel Dimanganese(II) Complex with Two Chloride Bridges − A Two-Electron Oxidation System
40. Electrospray ionization mass spectrometry analysis of the apo- and metal-substituted forms of the Fur protein
41. Magnetization Studies of the Reduced Active Form of the Catalase fromThermus thermophilus
42. Magnetisierungsstudien zur strukturellen Charakterisierung der reduzierten aktiven Form der Katalase von Thermus thermophilus
43. A Dinuclear (μ‐Carboxylato)manganese(II) Complex Derived from a Macrocyclic Ligand: A Structural Model for Active Sites in Natural Systems
44. Ein zweikerniger (μ-Carboxylato)mangan(II)-Komplex mit einem makrocyclischen Liganden, ein strukturelles Modell für manganhaltige aktive Zentren in natürlichen Systemen
45. A Model of Semimet Hemerythrin; NMR Spectroscopic Evidence of Valence Localization in Bis(μ‐carboxylato)(μ‐phenolato)diiron(II,III) Complexes in Solution
46. Ein Modell für Semimet-Hämerythrin; NMR-spektroskopischer Nachweis für die Lokalisierung der Ladung in Bis(μ-carboxylato)-(μ-phenolato)dieisen(II,III)-Komplexen in Lösung
47. A New Type of Trinuclear Oxoiron(III) Cluster
48. Neuartige dreikernige Oxoeisen(III)-Cluster
49. A Mixed-Valent, Unsymmetrical FeIIFeIII Complex with a Terminal Phenolato Ligand as a Model for the Active Site of Purple Acid Phosphatases
50. Ein gemischtvalenter, unsymmetrischer FeIIFEIII‐Komplex mit einem terminalen Phenolatoliganden als Modell für das aktive Zentrum violetter saurer Phosphatasen
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