13 resultats trouvés
Auteur Titre Type [ Année
Filtres: Auteur est Wang, Lianke [Clear All Filters]
An [FeFe]-Hydrogenase Mimic Immobilized through Simple Physiadsorption and Active for Aqueous H2 Production,
, ChemElectroChem, Volume 8, p.1674-1677, (2021)
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)
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)
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)
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)