Silver dendrites were prepared by electrochemical deposition. The structures of the Ag dendrites, the type of twins and their distribution were investigated by scanning electron microscopy (SEM), Z-contrast high angle annular dark field transmission electron microscopy (HAADF), and crystallographically sensitive orientation imaging microscopy (OIM). The results revealed that the silver dendrites were characterized by the presence of randomly distributed 180 degrees rotational twin domains. The broad surface of dendrites was of the {111} type. The directions of growth of the main dendrite stem and all branches were of the lt 112> type
The effect of different deposition regimes (constant and reversing currents, constant and pulsating ...
Dendritic structures are widely present in nature, from river networks to snowflakes. There is a lon...
The favorable growth kinetics of twinned dendrites can be explained by their complex morphology, mul...
Silver dendrites were prepared by electrochemical deposition. The structures of the Ag dendrites, th...
Detailed defect structure of dendrite formation was studied in order to connect the mesoscopic with ...
Silver dendritic nanonstructures obtained by the potentiostatic electrolysis from different electrol...
Silver dendritic nanostructures were prepared on indium tin oxide coated glass substrate by electroc...
This work deals with the formation of dendritic structures by electrodeposition of Cu2+ and Ag+ with...
Silver nanostructures of different morphologies including well-defined dendrites were synthesized on...
In this paper, the formation of zinc dendrites at the strip edge of an industrial electrogalvanizing...
Dendritic silver and copper crystals were produced via Galvanic replacement reactions on zinc and al...
In this paper, a rotating washer electrode was used to simulate the industrial conditions of strip e...
The influence of mass transport processes on the growth of three-dimensional dendritic Ag deposits o...
Single-crystalline Ag dendrites are grown on a Ni/Cu substrate by using a simple templateless, surfa...
The one of the main contributions of Belgrade Electrochemical School to the field of metal electrode...
The effect of different deposition regimes (constant and reversing currents, constant and pulsating ...
Dendritic structures are widely present in nature, from river networks to snowflakes. There is a lon...
The favorable growth kinetics of twinned dendrites can be explained by their complex morphology, mul...
Silver dendrites were prepared by electrochemical deposition. The structures of the Ag dendrites, th...
Detailed defect structure of dendrite formation was studied in order to connect the mesoscopic with ...
Silver dendritic nanonstructures obtained by the potentiostatic electrolysis from different electrol...
Silver dendritic nanostructures were prepared on indium tin oxide coated glass substrate by electroc...
This work deals with the formation of dendritic structures by electrodeposition of Cu2+ and Ag+ with...
Silver nanostructures of different morphologies including well-defined dendrites were synthesized on...
In this paper, the formation of zinc dendrites at the strip edge of an industrial electrogalvanizing...
Dendritic silver and copper crystals were produced via Galvanic replacement reactions on zinc and al...
In this paper, a rotating washer electrode was used to simulate the industrial conditions of strip e...
The influence of mass transport processes on the growth of three-dimensional dendritic Ag deposits o...
Single-crystalline Ag dendrites are grown on a Ni/Cu substrate by using a simple templateless, surfa...
The one of the main contributions of Belgrade Electrochemical School to the field of metal electrode...
The effect of different deposition regimes (constant and reversing currents, constant and pulsating ...
Dendritic structures are widely present in nature, from river networks to snowflakes. There is a lon...
The favorable growth kinetics of twinned dendrites can be explained by their complex morphology, mul...