The interfacial properties of Pt(111) single crystal electrodes have been investigated in the pH range 3 < pH < 5 in order to obtain information about the acidity of electrosorbed water. Proper experimental conditions are defined to avoid local pH changes while maintaining the absence of specifically adsorbed anions and preserving the cleanliness of the solution. For this purpose, buffer solutions resulting from mixtures of NaF and HClO4 are used. Total charge curves are obtained at different pHs from the integration of the voltammetric currents in combination with CO charge displacement experiments. Analysis of the composition of the interphase as a function of the pH provides information for the understanding of the notion of interfacial ...
The oxygen reduction reaction (ORR) at different pH values has been studied at platinum single cryst...
Cation effects: The role of alkaline cations on the double layer structure is demonstrated (see grap...
International audienceTo characterize electrosorption phenomena in well-defined interfacial conditio...
The interfacial properties of Pt(111) single crystal electrodes have been investigated in the pH ran...
The laser-induced temperature jump method is used to determine the potential of maximum entropy (pme...
The determination of the potentials of zero total and free charge, pztc and pzfc respectively, were ...
By flame-annealing and cooling a series of Pt n{110} × {111} and Pt n{110} × {100} single crystal el...
Experiments have been carried out in sulfuric and perchloric acid solutions on Pt(S)[n(110) × (100)]...
In this work, we investigate the in-situ spectro-electrochemical behavior of Pt(110) electrodes in c...
The concepts of total and free charge of platinum single crystal electrodes are revised in this pape...
The interfacial properties of platinum single crystal electrodes in contact with alkaline aqueous so...
The interface between the Pt(111) surface and several MeF/HClO4 (Me+ = Li+, Na+, or Cs+) aqueous ele...
Interfacial electrochemistry is a main part of Physical Electrochemistry, which is developing in sev...
Peroxodisulfate reduction has been investigated on Pt(111) on a broad range of pH values as a way to...
We present detailed measurements of the double-layer capacitance of the Pt(111)–electrolyte interfac...
The oxygen reduction reaction (ORR) at different pH values has been studied at platinum single cryst...
Cation effects: The role of alkaline cations on the double layer structure is demonstrated (see grap...
International audienceTo characterize electrosorption phenomena in well-defined interfacial conditio...
The interfacial properties of Pt(111) single crystal electrodes have been investigated in the pH ran...
The laser-induced temperature jump method is used to determine the potential of maximum entropy (pme...
The determination of the potentials of zero total and free charge, pztc and pzfc respectively, were ...
By flame-annealing and cooling a series of Pt n{110} × {111} and Pt n{110} × {100} single crystal el...
Experiments have been carried out in sulfuric and perchloric acid solutions on Pt(S)[n(110) × (100)]...
In this work, we investigate the in-situ spectro-electrochemical behavior of Pt(110) electrodes in c...
The concepts of total and free charge of platinum single crystal electrodes are revised in this pape...
The interfacial properties of platinum single crystal electrodes in contact with alkaline aqueous so...
The interface between the Pt(111) surface and several MeF/HClO4 (Me+ = Li+, Na+, or Cs+) aqueous ele...
Interfacial electrochemistry is a main part of Physical Electrochemistry, which is developing in sev...
Peroxodisulfate reduction has been investigated on Pt(111) on a broad range of pH values as a way to...
We present detailed measurements of the double-layer capacitance of the Pt(111)–electrolyte interfac...
The oxygen reduction reaction (ORR) at different pH values has been studied at platinum single cryst...
Cation effects: The role of alkaline cations on the double layer structure is demonstrated (see grap...
International audienceTo characterize electrosorption phenomena in well-defined interfacial conditio...