Molecular Catalysis of Electrochemical Reactions: Competition between Reduction of the Substrate and Deactivation of the Catalyst by a Cosubstrate Application to N2O Reduction,
, ChemElectroChem, Volume 8, p.3740-3744, (2021)
Importance of Ligand Exchange in the Modulation of Molecular Catalysis: Mechanism of the Electrochemical Reduction of Nitrous Oxide with Rhenium Bipyridyl Carbonyl Complexes,
, ACS Catalysis, Volume 13, p.8262-8272, (2023)
Homogeneous molecular catalysis of the electrochemical reduction of N2O to N2: redox vs. chemical catalysis,
, Chem. Sci., Volume 12, p.12726-12732, (2021)
Electrochemical Mechanistic Analysis from Cyclic Voltammograms Based on Deep Learning,
, ACS Measurement Science Au, p.null, (2022)
Effective Homogeneous Catalysis of Electrochemical Reduction of Nitrous Oxide to Dinitrogen at Rhenium Carbonyl Catalysts,
, ACS Catalysis, Volume 11, p.6099-6103, (2021)
Controlled Potential Electrolysis: Transition from Fast to Slow Regimes in Homogeneous Molecular Catalysis. Application to the Electroreduction of CO2 Catalyzed by Iron Porphyrin,
, ChemElectroChem, Volume n/a, p.e202300350, (2023)