As in the case of most small organic molecules, the electro-oxidation of methanol to CO2 is believed to proceed through a so-called dual pathway mechanism. The direct pathway proceeds via reactive intermediates such as formaldehyde or formic acid, whereas the indirect pathway occurs in parallel, and proceeds via the formation of adsorbed carbon monoxide (COad). Despite the extensive literature on the electro-oxidation of methanol, no study to date distinguished the production of CO2 from direct and indirect pathways. Working under, far-from-equilibrium, oscillatory conditions, we were able to decouple, for the first time, the direct and indirect pathways that lead to CO2 during the oscillatory electro-oxidation of methanol on platinum. The ...
Methanol is a promising fuel for direct methanol fuel cells in portable devices. A deeper understand...
International audienceThe electrocatalytic oxidation of small organic molecules, such as formic acid...
We have investigated the reaction mechanism of the electrochemical reduction of carbon dioxide to hy...
As in the case of most small organic molecules, the electro-oxidation of methanol to CO2 is believed...
We report the experimental study of the impact of anion adsorption on the two parallel pathways of C...
Methanol electro-oxidation was studied on a series of electrodeposited PtxRuy catalysts constructed ...
Research on two independent projects is presented:(1) Homogeneous cascade catalysis has been used fo...
In the field of catalysis on solid surfaces, discrimination of the site-specific chemistry taking pl...
The study of complex reaction under oscillatory conditions has been proven to be useful in uncoverin...
Fuel cells utilizing small organic molecules like methanol, ethanol, or formic acid as fuel are prom...
The study of complex reaction under oscillatory conditions has been proven to be useful in uncoverin...
By monitoring the mass fractions of CO2 (m/z 44) and methylformate (m/z 60, formed from CH3OH + HCOO...
A modified water electrolysis process has been developed to produce H2. The electrolysis cell oxidiz...
Electrochemical reduction of CO2 can generate fuel precursors and additives, yet the set of possible...
[EN] Untangling the mechanism of the methanol electro-oxidation on platinum in water as a model reac...
Methanol is a promising fuel for direct methanol fuel cells in portable devices. A deeper understand...
International audienceThe electrocatalytic oxidation of small organic molecules, such as formic acid...
We have investigated the reaction mechanism of the electrochemical reduction of carbon dioxide to hy...
As in the case of most small organic molecules, the electro-oxidation of methanol to CO2 is believed...
We report the experimental study of the impact of anion adsorption on the two parallel pathways of C...
Methanol electro-oxidation was studied on a series of electrodeposited PtxRuy catalysts constructed ...
Research on two independent projects is presented:(1) Homogeneous cascade catalysis has been used fo...
In the field of catalysis on solid surfaces, discrimination of the site-specific chemistry taking pl...
The study of complex reaction under oscillatory conditions has been proven to be useful in uncoverin...
Fuel cells utilizing small organic molecules like methanol, ethanol, or formic acid as fuel are prom...
The study of complex reaction under oscillatory conditions has been proven to be useful in uncoverin...
By monitoring the mass fractions of CO2 (m/z 44) and methylformate (m/z 60, formed from CH3OH + HCOO...
A modified water electrolysis process has been developed to produce H2. The electrolysis cell oxidiz...
Electrochemical reduction of CO2 can generate fuel precursors and additives, yet the set of possible...
[EN] Untangling the mechanism of the methanol electro-oxidation on platinum in water as a model reac...
Methanol is a promising fuel for direct methanol fuel cells in portable devices. A deeper understand...
International audienceThe electrocatalytic oxidation of small organic molecules, such as formic acid...
We have investigated the reaction mechanism of the electrochemical reduction of carbon dioxide to hy...