International audienceThis paper is devoted to the Study of the influence of the electrochemical kinetics on the microscopic structure of a metal-electrolyte interface dissolving through anodic dissolution. The effect of intermediate adsorption reactions, single or multiple dissolution paths, and passivation processes, are investigated in terms of surface roughness and adsorbed species organization along the interface. Computer simulations results are compared to theoretical predictions developed from a macroscopic kinetic description based on probability functions emulating the classical mass balance equations. A linear approximation to the relationship between the spatial and temporal scales of the dissolution front allows an analytical i...
15 pages, 6 figures.-- PACS nrs.: 68.35.Ct, 81.15.Pq, 81.10.-h, 64.60.Ht.-- MSC2000 codes: 82C31, 82...
A model of processes at the interface between an electrolyte and a passivating oxide layer on a meta...
A model of processes at the interface between an electrolyte and a passivating oxide layer on a meta...
International audienceThis paper is devoted to the Study of the influence of the electrochemical kin...
International audienceThis paper is devoted to the Study of the influence of the electrochemical kin...
International audienceThis paper is devoted to the Study of the influence of the electrochemical kin...
International audienceThis paper is devoted to the Study of the influence of the electrochemical kin...
The way of characterizing an interfacial morphology and its relation to the mechanism of transformat...
The way of characterizing an interfacial morphology and its relation to the mechanism of transformat...
Several electrochemical methods have been developed in recent years for the study of the kinetic par...
The control of metal dissolution processes is important in fields ranging from battery technology to...
[[abstract]]We propose a three‐step mechanism to describe the kinetics of the initial dissolution of...
[[abstract]]The anodic dissolution of zinc electrodes in potassium hydroxide solutions containing so...
15 pages, 6 figures.-- PACS nrs.: 68.35.Ct, 81.15.Pq, 81.10.-h, 64.60.Ht.-- MSC2000 codes: 82C31, 82...
A model for the kinetics of active zinc dissolution isdeveloped taking into account the presence of ...
15 pages, 6 figures.-- PACS nrs.: 68.35.Ct, 81.15.Pq, 81.10.-h, 64.60.Ht.-- MSC2000 codes: 82C31, 82...
A model of processes at the interface between an electrolyte and a passivating oxide layer on a meta...
A model of processes at the interface between an electrolyte and a passivating oxide layer on a meta...
International audienceThis paper is devoted to the Study of the influence of the electrochemical kin...
International audienceThis paper is devoted to the Study of the influence of the electrochemical kin...
International audienceThis paper is devoted to the Study of the influence of the electrochemical kin...
International audienceThis paper is devoted to the Study of the influence of the electrochemical kin...
The way of characterizing an interfacial morphology and its relation to the mechanism of transformat...
The way of characterizing an interfacial morphology and its relation to the mechanism of transformat...
Several electrochemical methods have been developed in recent years for the study of the kinetic par...
The control of metal dissolution processes is important in fields ranging from battery technology to...
[[abstract]]We propose a three‐step mechanism to describe the kinetics of the initial dissolution of...
[[abstract]]The anodic dissolution of zinc electrodes in potassium hydroxide solutions containing so...
15 pages, 6 figures.-- PACS nrs.: 68.35.Ct, 81.15.Pq, 81.10.-h, 64.60.Ht.-- MSC2000 codes: 82C31, 82...
A model for the kinetics of active zinc dissolution isdeveloped taking into account the presence of ...
15 pages, 6 figures.-- PACS nrs.: 68.35.Ct, 81.15.Pq, 81.10.-h, 64.60.Ht.-- MSC2000 codes: 82C31, 82...
A model of processes at the interface between an electrolyte and a passivating oxide layer on a meta...
A model of processes at the interface between an electrolyte and a passivating oxide layer on a meta...