A Straightforward Model for Quantifying Local pH Gradients Governing the Oxygen Evolution Reaction | Journal of the American Chemical Society https://t.co/CdHJsvBQWJ
Redox-Detecting Deep Learning for Mechanism Discernment in Cyclic Voltammograms of Multiple Redox Events | ACS Electrochemistry https://t.co/rd6GIuKVWI
Iron(I) Tetraphenylporphyrin Is an Active Catalyst in Reductive Deoxygenation when Switching from CO2 to Isoelectronic N2O | ACS Catalysis https://t.co/fA2B8fzYe3
Very honored to be awarded the 2024 Jaroslav Heyrovsky Prize for Molecular Electrochemistry from the International Society of Electrochemistry.
https://t.co/SC1hMxOjEH
@DCMGrenoble
Mechanism of Electrochemical Proton Reduction Catalyzed by a Cobalt Tetraaza Schiff Base Macrocyclic Complex: Ligand Protonation and/or Influence of the Chloro Ligand | ACS Catalysis https://t.co/GGULoAuUr0
@DCMGrenoble
Turnover Number in Photoinduced Molecular Catalysis of Hydrogen Evolution: a Benchmarking for Catalysts? (Cyrille Costentin and co-workers) @DCM, @costentin, @mn_collomb#openaccess https://t.co/PRhcxzIEYm
Redox Behavior and Kinetics of Hydroxo Ligand Exchange on Iron Tetraphenylporphyrin: Comparison with Chloro Exchange and Consequences for Its Role in Self-Modulation of Molecular Catalysis of Electrochemical Reactions | Inorganic Chemistry https://t.co/LAupC8B4f2
Controlled Potential Electrolysis: Transition from Fast to Slow Regimes in Homogeneous Molecular Catalysis. Application to the Electroreduction of CO2 Catalyzed by Iron Porphyrin (Cyrille Costentin and co-workers) @DCM #OpenAccess https://t.co/nV9QDf5kVv
Now online:
News & Views on Article by Jing Li, Bo Shang, Yuanzuo Gao, Seonjeong Cheon, Conor L. Rooney & Hailiang Wang @YaleChem in @NatureSynthesis
https://t.co/EN95VdooMc
Hybrid catalyst to the rescue by Cyrille Costentin @costentin
https://t.co/cMCYsREFIA ($)
Deciphering Reversible #HomogeneousCatalysis of the Electrochemical H2 Evolution and Oxidation: Role of Proton Relays and Local Concentration Effects (Vincent Artero and co-workers) @DCM @SolHyCat #AngewandteVIP#openaccess https://t.co/nuou8SzeuE
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 https://t.co/0eAeIzDRCC
Happy to see this work finally out in @NatureCatalysis Had a great time working with the Mason group (not on twitter) and @costentin
https://t.co/HrB57wptSG
Please RT! We are Hiring!
Our lab (@LCMCE_Lab) in Saclay, France, has 3 open positionspostdoc in the area of homogenous and heterogeneous catalysis, organometallic and organic chemistry on H2 storage and CO2/CO conversion.
Come work with us on exciting projects! #chempostdoc