Cu electrodeposition was performed on a cylindrical AZ80 substrate with a U-shaped surface. A uniform deposition of Cu was achieved on an AZ80 electrode via galvanostatic etching, followed by Cu electrodeposition in an eco-friendly alkaline Cu plating bath. Improper wetting and lower rotational speeds of the AZ80 electrode resulted in an uneven Cu deposition at the inner upper site of the U-shaped surface during the Cu electroplating process. This wetting effect could be deduced from the variation in the anodic potential during the galvanostatic etching. The corrosion resistance of the Cu-deposited AZ80 electrode can be considerably improved after Ni electroplating
Thin films of copper alloys are of interest for electronic applications. These are routinely produce...
Electrochemical deposition of metals on metals is a widely used industrial process and understanding...
The electrodeposition of Copper-lead alloys on steel sheet cathodes has been studied by electrodepos...
Magnesium and its alloys have limited wide applications due to their poor corrosion resistance. In t...
Cu was electrodeposited on AZ91 D Mg alloy with zincate pretreatment in an alkaline plating bath, an...
Cu-Zn alloys have been electrodeposited from a pyrophosphate electrolyte containing Cu2P2O7, Zn2P2O7...
The electrodeposition of Cu-Zn-Sn alloys from a commercial alkaline cyanide bath has been investigat...
Electroplating of Cu-Zn alloys from sulfate solutions containing sodium tripolyphosphate was investi...
AbstractThe electrodeposition of copper–zinc on 1010 steel from a non-cyanide alkaline electrolyte b...
[[abstract]]©2003 Elsevier - The electrodeposition of various copper deposits was carried out by mea...
The effect of a magnetic field on copper electrodeposition was investigated. Copper was electrodepos...
Thin films of copper alloys are of interest for electronic applications. These are routinely produce...
In the recent years, copper has been replacing aluminum to be widely used as the interconnect materi...
A wafer-scale wet alkaline seed electrodeposition process directly on resistive substrates, such as ...
[[abstract]]This work examines the impact of the wetting ability of a plating electrolyte on the Cu ...
Thin films of copper alloys are of interest for electronic applications. These are routinely produce...
Electrochemical deposition of metals on metals is a widely used industrial process and understanding...
The electrodeposition of Copper-lead alloys on steel sheet cathodes has been studied by electrodepos...
Magnesium and its alloys have limited wide applications due to their poor corrosion resistance. In t...
Cu was electrodeposited on AZ91 D Mg alloy with zincate pretreatment in an alkaline plating bath, an...
Cu-Zn alloys have been electrodeposited from a pyrophosphate electrolyte containing Cu2P2O7, Zn2P2O7...
The electrodeposition of Cu-Zn-Sn alloys from a commercial alkaline cyanide bath has been investigat...
Electroplating of Cu-Zn alloys from sulfate solutions containing sodium tripolyphosphate was investi...
AbstractThe electrodeposition of copper–zinc on 1010 steel from a non-cyanide alkaline electrolyte b...
[[abstract]]©2003 Elsevier - The electrodeposition of various copper deposits was carried out by mea...
The effect of a magnetic field on copper electrodeposition was investigated. Copper was electrodepos...
Thin films of copper alloys are of interest for electronic applications. These are routinely produce...
In the recent years, copper has been replacing aluminum to be widely used as the interconnect materi...
A wafer-scale wet alkaline seed electrodeposition process directly on resistive substrates, such as ...
[[abstract]]This work examines the impact of the wetting ability of a plating electrolyte on the Cu ...
Thin films of copper alloys are of interest for electronic applications. These are routinely produce...
Electrochemical deposition of metals on metals is a widely used industrial process and understanding...
The electrodeposition of Copper-lead alloys on steel sheet cathodes has been studied by electrodepos...