43 resultats trouvés
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Electrochemical CO2 Reduction with a Heterogenized Iridium-Pincer Catalyst in Water,
, ChemCatChem, Volume 15, Number Copyright © 2023 American Chemical Society (ACS). All Rights Reserved., p.e202300049, (2023)
Phosphine Oxide Porous Organic Polymers Incorporating Cobalt(II) Ions: Synthesis, Characterization, and Investigation of H2 Production,
, ACS Omega, Volume 7, p.6104-6112, (2022)
An [FeFe]-Hydrogenase Mimic Immobilized through Simple Physiadsorption and Active for Aqueous H2 Production,
, ChemElectroChem, Volume 8, p.1674-1677, (2021)
Synergy between metals for small molecule activation: Enzymes and bio-inspired complexes,
, Coordination Chemistry Reviews, Volume 428, p.213606, (2021)
Bio-inspired, Multifunctional Metal–Thiolate Motif: From Electron Transfer to Sulfur Reactivity and Small-Molecule Activation,
, Accounts of Chemical Research, Volume 53, p.2753-2761, (2020)
O2 Activation by Non-Heme Thiolate-Based Dinuclear Fe Complexes,
, Inorganic Chemistry, Volume 59, p.3249-3259, (2020)
Role of the Metal Ion in Bio-Inspired Hydrogenase Models: Investigation of a Homodinuclear FeFe Complex vs Its Heterodinuclear NiFe Analogue,
, ACS Catalysis, Volume 10, p.177-186, (2020)
Role of the Metal Ion in Bio-Inspired Hydrogenase Models: Investigation of a Homodinuclear FeFe Complex vs Its Heterodinuclear NiFe Analogue,
, ACS Catalysis, Volume 10, p.177-186, (2020)
A Non-Heme Diiron Complex for (Electro)catalytic Reduction of Dioxygen: Tuning the Selectivity through Electron Delivery,
, Journal of the American Chemical Society, Volume 141, p.8244-8253, (2019)
A Non-Heme Diiron Complex for (Electro)catalytic Reduction of Dioxygen: Tuning the Selectivity through Electron Delivery,
, Journal of the American Chemical Society, Volume 141, p.8244-8253, (2019)
Experimental and Theoretical Identification of the Origin of Magnetic Anisotropy in Intermediate Spin Iron(III) Complexes.,
, Chem. - A Eur. J., Volume 24, Number 20, p.5091–5094, (2018)
Experimental and Theoretical Identification of the Origin of Magnetic Anisotropy in Intermediate Spin Iron(III) Complexes,
, Chemistry – A European Journal, Volume 24, p.5091-5094, (2018)
Hydrogen Evolution from Aqueous Solutions Mediated by a Heterogenized [NiFe]-Hydrogenase Model: Low pH Enables Catalysis through an Enzyme-Relevant Mechanism,
, Angewandte Chemie International Edition, Volume 57, p.16001-16004, (2018)
Hydrogen Evolution from Aqueous Solutions Mediated by a Heterogenized [NiFe]-Hydrogenase Model: Low pH Enables Catalysis through an Enzyme-relevant Mechanism.,
, Angew. Chemie, Int. Ed., Volume 57, Number 49, p.16001–16004, (2018)
Solvent- and Halide-Induced (Inter)conversion between Iron(II)-Disulfide and Iron(III)-Thiolate Complexes,
, Chemistry – A European Journal, Volume 24, p.11973-11982, (2018)
Solvent- and Halide-Induced (Inter)conversion between Iron(II)-Disulfide and Iron(III)-Thiolate Complexes.,
, Chem. - A Eur. J., Volume 24, Number 46, p.11973–11982, (2018)
Tuning Reactivity of Bioinspired [NiFe]-Hydrogenase Models by Ligand Design and Modeling the CO Inhibition Process.,
, ACS Catal., Volume 8, Number 11, p.10658–10667, (2018)
Tuning Reactivity of Bioinspired [NiFe]-Hydrogenase Models by Ligand Design and Modeling the CO Inhibition Process,
, ACS Catalysis, Volume 8, p.10658-10667, (2018)
Heterogenization of a [NiFe] Hydrogenase Mimic through Simple and Efficient Encapsulation into a Mesoporous MOF.,
, Inorg. Chem., Volume 56, p.14801–14808, (2017)
Heterogenization of a [NiFe] Hydrogenase Mimic through Simple and Efficient Encapsulation into a Mesoporous MOF,
, Inorganic Chemistry, Volume 56, p.14801-14808, (2017)
A High-Valent Non-Heme μ-Oxo Manganese(IV) Dimer Generated from a Thiolate-Bound Manganese(II) Complex and Dioxygen.,
, Angew. Chemie, Int. Ed., Volume 56, Number 28, p.8211–8215, (2017)
Molecular Catalysts for N2 Reduction: State of the Art, Mechanism, and Challenges.,
, ChemPhysChem, Volume 18, Number 19, p.2606–2617, (2017)
Molecular Catalysts for N2 Reduction: State of the Art, Mechanism, and Challenges,
, ChemPhysChem, Volume 18, p.2606-2617, (2017)
An Experimental and Theoretical Investigation on Pentacoordinated Cobalt(III) Complexes with an Intermediate S=1 Spin State: How Halide Ligands Affect their Magnetic Anisotropy.,
, Chem. - A Eur. J., Volume 22, Number 3, p.925–933, (2016)
Multifrequency cw-EPR and DFT Studies of an Apparent Compressed Octahedral Cu(II) Complex.,
, Inorg. Chem., Volume 55, Number 4, p.1497–1504, (2016)
Nickel-centred proton reduction catalysis in a model of [NiFe] hydrogenase.,
, Nat. Chem., Volume 8, Number 11, p.1054–1060, (2016)
Ca K-Edge XAS as a Probe of Calcium Centers in Complex Systems.,
, Inorg. Chem., Volume 54, Number 4, p.1283–1292, (2015)
Calcium and heterometallic manganese-calcium complexes supported by tripodal pyridine-carboxylate ligands: structural, EPR and theoretical investigations.,
, Dalt. Trans., Volume 44, Number 28, p.12757–12770, (2015)
Dioxygen Activation and Catalytic Reduction to Hydrogen Peroxide by a Thiolate-Bridged Dimanganese(II) Complex with a Pendant Thiol.,
, J. Am. Chem. Soc., Volume 137, Number 26, p.8644–8653, (2015)
Highly dense nickel hydroxide nanoparticles catalyst electrodeposited from a novel Ni(II) paddle-wheel complex.,
, J. Catal., Volume 329, p.22–31, (2015)
How Accurately Can Extended X-ray Absorption Spectra Be Predicted from First Principles? Implications for Modeling the Oxygen-Evolving Complex in Photosystem II.,
, J. Am. Chem. Soc., Volume 137, Number 40, p.12815–12834, (2015)
Visible Light-Driven Electron Transfer from a Dye-Sensitized p-Type NiO Photocathode to a Molecular Catalyst in Solution: Toward NiO-Based Photoelectrochemical Devices for Solar Hydrogen Production.,
, J. Phys. Chem. C, Volume 119, Number 11, p.5806–5818, (2015)
A Bio-Inspired Switch Based on Cobalt(II) Disulfide/Cobalt(III) Thiolate Interconversion.,
, Angew. Chemie, Int. Ed., Volume 53, Number 21, p.5318–5321, (2014)
An efficient RuII-RhIII-RuII polypyridyl photocatalyst for visible-light-driven hydrogen production in aqueous solution.,
, Angew. Chemie, Int. Ed., Volume 53, Number 6, p.1654–1658, (2014)
Long-Lived Charge Separated State in NiO-Based p-Type Dye-Sensitized Solar Cells with Simple Cyclometalated Iridium Complexes.,
, J. Phys. Chem. Lett., Volume 5, Number 13, p.2254–2258, (2014)
On the Road to MM'X Polymers: Redox Properties of Heterometallic Ni···Pt Paddlewheel Complexes.,
, Inorg. Chem., Volume 53, Number 19, p.10553–10562, (2014)
[RhIII(dmbpy)2Cl2]+ as a Highly Efficient Catalyst for Visible-Light-Driven Hydrogen Production in Pure Water: Comparison with Other Rhodium Catalysts.,
, Chem. - A Eur. J., Volume 19, Number 2, p.782–792, (2013)
A copper thiolate centre for electron transfer: mononuclear vs. dinuclear complexes.,
, Dalt. Trans., Volume 41, Number 11, p.3130–3133, (2012)
Structural, spectroscopic and redox properties of a mononuclear CoII thiolate complex - the reactivity toward S-alkylation: an experimental and theoretical study.,
, Dalt. Trans., Volume 41, Number 40, p.12586–12594, (2012)
Experimental and Computational Investigation of Thiolate Alkylation in NiII and ZnII Complexes: Role of the Metal on the Sulfur Nucleophilicity.,
, Inorg. Chem., Volume 50, Number 20, p.10047–10055, (2011)
A Fully Delocalized Mixed-Valence Bis-$μ$(Thiolato) Dicopper Complex: A Structural and Functional Model of the Biological CuA Center.,
, Angew. Chemie, Int. Ed., Volume 50, Number 25, p.5662–5666, S5662/1–S5662/16, (2011)
Influence of Mixed Thiolate/Thioether versus Dithiolate Coordination on the Accessibility of the Uncommon +I and +III Oxidation States for the Nickel Ion: An Experimental and Computational Study.,
, Inorg. Chem., Volume 50, Number 8, p.3707–3716, (2011)
Reversible Apical Coordination of Imidazole between the Ni(III) and Ni(II) Oxidation States of a Dithiolate Complex: A Process Related to the Ni Superoxide Dismutase.,
, Inorg. Chem., Volume 49, Number 14, p.6399–6401, (2010)