Developments in the biomimetic chemistry of cubane-type and higher nuclearity iron-sulfur clusters.
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Nitric oxide activation by distal redox modulation in tetranuclear iron nitrosyl complexesMetal Ion Modeling Using Classical MechanicsInsight into the Iron-Molybdenum Cofactor of Nitrogenase from Synthetic Iron Complexes with Sulfur, Carbon, and Hydride LigandsRational construction of functional molybdenum (tungsten)-copper-sulfur coordination oligomers and polymers from preformed cluster precursors.Binding of dinitrogen to an iron-sulfur-carbon siteRecent advances in biosynthetic modeling of nitric oxide reductases and insights gained from nuclear resonance vibrational and other spectroscopic studies.Lessons from Nature: A Bio-Inspired Approach to Molecular Design.X-ray Absorption and Emission Spectroscopic Studies of [L2Fe2S2](n) Model Complexes: Implications for the Experimental Evaluation of Redox States in Iron-Sulfur Clusters.Quantitation of the THF Content in Fe[N(SiMe3)2]2·xTHF.Metalloproteins containing cytochrome, iron-sulfur, or copper redox centersStructural and functional models in molybdenum and tungsten bioinorganic chemistry: description of selected model complexes, present scenario and possible future scopes.The discovery of Mo(III) in FeMoco: reuniting enzyme and model chemistry.Bioinorganic modeling chemistry of carbon monoxide dehydrogenases: description of model complexes, current status and possible future scopes.Diiron bridged-thiolate complexes that bind N2 at the Fe(II)Fe(II), Fe(II)Fe(I), and Fe(I)Fe(I) redox states.Combining a Nitrogenase Scaffold and a Synthetic Compound into an Artificial Enzyme.Synthetic Analogues of Nitrogenase Metallocofactors: Challenges and Developments.A Low-Valent Iron Imido Heterocubane Cluster: Reversible Electron Transfer and Catalysis of Selective C-C Couplings.Reactivity of an All-Ferrous Iron-Nitrogen Heterocubane under Reductive and Oxidative Conditions.Structure and Reactivity of an Asymmetric Synthetic Mimic of Nitrogenase Cofactor.Visible-Light-Driven Iron-Promoted Thiocarboxylation of Styrenes and Acrylates with CO2.Synthesis, structural characterization and conversion of dinuclear iron-sulfur clusters containing the disulfide ligand: [Cp*Fe(μ-η2:η2-bdt)(cis-μ-η1:η1-S2)FeCp*], [Cp*Fe(μ-S(C6H4S2))(cis-μ-η1:η1-S2)FeCp*], and [{Cp*Fe(bdt)}2(trans-μ-η1:η1-S2)].Development of a Rubredoxin-Type Center Embedded in a de Dovo-Designed Three-Helix Bundle.ATP-dependent substrate reduction at an [Fe8S9] double-cubane cluster.Ligand metathesis as rational strategy for the synthesis of cubane-type heteroleptic iron-sulfur clusters relevant to the FeMo cofactor.Migratory insertion and hydrogenation of a bridging azide in a thiolate-bridged dicobalt reaction platform.Radicals and Dormant Species in Biology and Polymer ChemistryA Low-Valent Iron Imido Heterocubane Cluster: Reversible Electron Transfer and Catalysis of Selective C-C CouplingsA [3Fe–3S]3+ cluster with exclusively μ-sulfide donors
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Developments in the biomimetic chemistry of cubane-type and higher nuclearity iron-sulfur clusters.
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article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 13 January 2014
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Developments in the biomimetic ...... clearity iron-sulfur clusters.
@en
Developments in the biomimetic ...... clearity iron-sulfur clusters.
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type
label
Developments in the biomimetic ...... clearity iron-sulfur clusters.
@en
Developments in the biomimetic ...... clearity iron-sulfur clusters.
@nl
prefLabel
Developments in the biomimetic ...... clearity iron-sulfur clusters.
@en
Developments in the biomimetic ...... clearity iron-sulfur clusters.
@nl
P2093
P2860
P356
P1433
P1476
Developments in the biomimetic ...... clearity iron-sulfur clusters.
@en
P2093
P2860
P304
P356
10.1021/CR4004067
P577
2014-01-13T00:00:00Z