A uniform magnetic field unexpectedly alters the form of copper deposits grown in a flat electrochemical cell; the patterns change from radial to unidirectional when the cell is horizontal and vice versa when the cell is vertical. The electrodeposits are characterised by their chirality and fractal dimension. Complex impedance spectra show that the effective diffusion coefficient of the copper ions is doubled in a field of 1 T. The results demonstrate that the field produces a body force comparable to that of gravity. From dimensional analysis, it is inferred that the field modifies convective flow on a scale of a few microns close to the cathode
Magnetic fields in electrochemical systems head to magnetohydrodynamic stirring via the Lorenz force...
International audienceWe are studying the effect of a magnetic field normal to the cell in electrode...
Sparse metallic crystals of iron, cobalt, and zinc are produced by electrodeposition on polyaniline ...
We report some experimental results for quasi-two-dimensional electrocrystallization of copper under...
The effect of a magnetic field on copper electrodeposition was investigated. Copper was electrodepos...
Introduction. The influence of magnetic fields up to µ0H = 1 T differently aligned to the electrode ...
Effects of a magnetic field (≤0.5 T) on electroless copper metal deposition from the reaction of a c...
Black dendritic growths of copper were electrodeposited in steady-state diffusion-limited conditions...
International audienceWe are studying the effect of a magnetic field normal to the cell in electrode...
Magnetic fields shift the open circuit potential (OCP) of ferromagnetic electrodes (Fe, Co, and Ni) ...
The effect of magnetic fields applied on magnetic metals electrodeposition was examined. Nickel depo...
Roughening is one of the main problems in the electrodeposition process and numerous studies have be...
THESIS 6363The effect of a static magnetic field on the electrodeposition and electrodissolution of ...
Copper and β′ brass are electrodeposited in thin gap geometry and a clear transition from dense bran...
A morfologia observada em padrões eletrocristalizados é fortemente influenciada pela convecção pres...
Magnetic fields in electrochemical systems head to magnetohydrodynamic stirring via the Lorenz force...
International audienceWe are studying the effect of a magnetic field normal to the cell in electrode...
Sparse metallic crystals of iron, cobalt, and zinc are produced by electrodeposition on polyaniline ...
We report some experimental results for quasi-two-dimensional electrocrystallization of copper under...
The effect of a magnetic field on copper electrodeposition was investigated. Copper was electrodepos...
Introduction. The influence of magnetic fields up to µ0H = 1 T differently aligned to the electrode ...
Effects of a magnetic field (≤0.5 T) on electroless copper metal deposition from the reaction of a c...
Black dendritic growths of copper were electrodeposited in steady-state diffusion-limited conditions...
International audienceWe are studying the effect of a magnetic field normal to the cell in electrode...
Magnetic fields shift the open circuit potential (OCP) of ferromagnetic electrodes (Fe, Co, and Ni) ...
The effect of magnetic fields applied on magnetic metals electrodeposition was examined. Nickel depo...
Roughening is one of the main problems in the electrodeposition process and numerous studies have be...
THESIS 6363The effect of a static magnetic field on the electrodeposition and electrodissolution of ...
Copper and β′ brass are electrodeposited in thin gap geometry and a clear transition from dense bran...
A morfologia observada em padrões eletrocristalizados é fortemente influenciada pela convecção pres...
Magnetic fields in electrochemical systems head to magnetohydrodynamic stirring via the Lorenz force...
International audienceWe are studying the effect of a magnetic field normal to the cell in electrode...
Sparse metallic crystals of iron, cobalt, and zinc are produced by electrodeposition on polyaniline ...