Silver dendritic nanonstructures obtained by the potentiostatic electrolysis from different electrolytes at different overpotentials were characterized by the scanning electron microscopy (SEM) technique and X-ray diffraction analysis of the produced particles. The needle-like and fern-like dendrites were formed from the nitrate electrolyte at overpotentials inside and outside plateaus of the limiting diffusion current density, respectively. The three-dimensional pine-like dendrites constructed from approximately spherical grains were formed from the ammonium electrolyte at overpotentials both inside and outside plateaus of the limiting diffusion current density. The morphology of silver dendrites was correlated with their crystal structure...
Single-crystalline Ag dendrites are grown on a Ni/Cu substrate by using a simple templateless, surfa...
Electrodeposition of lead from a concentrated nitrate solution was examined by scanning electron mic...
The crystallographic properties of silver nanoparticles with different morphologies (two different k...
Silver dendritic nanonstructures obtained by the potentiostatic electrolysis from different electrol...
Silver nanostructures of different morphologies including well-defined dendrites were synthesized on...
Silver powders chemically synthesized by reduction with hydrazine and those produced by electrolysis...
Electrodeposition technique is very suitable way to obtain nanostructures of the desired shapes and ...
The formation of tin dendritic nanostructures by electrolysis from the alkaline electrolytehas been ...
Silver dendritic nanostructures were prepared on indium tin oxide coated glass substrate by electroc...
Silver dendrites were prepared by electrochemical deposition. The structures of the Ag dendrites, th...
Silver powder particles of nanostructured characteristics were produced by the galvanostatic regime ...
Detailed defect structure of dendrite formation was studied in order to connect the mesoscopic with ...
Electrodeposition produced features with a dendritic morphology and features with a branched wire li...
Here we report a study on the role of chemical diffusion and reaction on the morphology evolution ...
Dendritic structures are widely present in nature, from river networks to snowflakes. There is a lon...
Single-crystalline Ag dendrites are grown on a Ni/Cu substrate by using a simple templateless, surfa...
Electrodeposition of lead from a concentrated nitrate solution was examined by scanning electron mic...
The crystallographic properties of silver nanoparticles with different morphologies (two different k...
Silver dendritic nanonstructures obtained by the potentiostatic electrolysis from different electrol...
Silver nanostructures of different morphologies including well-defined dendrites were synthesized on...
Silver powders chemically synthesized by reduction with hydrazine and those produced by electrolysis...
Electrodeposition technique is very suitable way to obtain nanostructures of the desired shapes and ...
The formation of tin dendritic nanostructures by electrolysis from the alkaline electrolytehas been ...
Silver dendritic nanostructures were prepared on indium tin oxide coated glass substrate by electroc...
Silver dendrites were prepared by electrochemical deposition. The structures of the Ag dendrites, th...
Silver powder particles of nanostructured characteristics were produced by the galvanostatic regime ...
Detailed defect structure of dendrite formation was studied in order to connect the mesoscopic with ...
Electrodeposition produced features with a dendritic morphology and features with a branched wire li...
Here we report a study on the role of chemical diffusion and reaction on the morphology evolution ...
Dendritic structures are widely present in nature, from river networks to snowflakes. There is a lon...
Single-crystalline Ag dendrites are grown on a Ni/Cu substrate by using a simple templateless, surfa...
Electrodeposition of lead from a concentrated nitrate solution was examined by scanning electron mic...
The crystallographic properties of silver nanoparticles with different morphologies (two different k...