Copper (Cu) nanoparticles as the metal nanoparticles in the conductive ink were synthesized using electrochemical reaction. This method is characterized as the synthesis process without any metal salts and the post-treatment of washing and drying. It means that it does not need to consider about oxidized and agglomerated metal nanoparticles during the extra treatments. The Cu nanoparticles were synthesized in the various conditions of electrolyte to investigate the mechanism of the synthesis reaction of Cu nanoparticles. And also, the synthesized Cu nanoparticles were controlled the dispersion stability with the addition of dispersion agent such as PVP and Dextran. Finally, it was achieved the ink-jet printed Cu patterns using the synthesiz...
An aqueous inkjettable conductive fluid based on carbon coated copper nanoparticles has been develop...
In this study, a thermally triggered self-reducible copper ink is developed to print conductive patt...
Inkjet printing of electrode using copper nanoparticle ink is presented. Electrode was printed on a ...
Copper (Cu) nanoparticles as the metal nanoparticles in the conductive ink were synthesized using el...
In the ink-jet patterning process, conductive ink composed of metal nanoparticles and solutions, is ...
In the ink-jet patterning process, conductive ink composed of metal nanoparticles and solutions, is ...
In the ink-jet patterning process, conductive ink composed of metal nanoparticles and solutions, is ...
A modified electrolysis method was employed to synthesize copper nanoparticles for mass production. ...
In this study, Cu ion complex ink was successfully synthesized by a modified electrolysis method in ...
The production of microelectronics is currently dominated by subtractive manufacturing methods, whic...
A simple and low-cost process for fabricating conductive copper patterns on flexible polyimide subst...
Nanotechnology is used in a wide range of fields, including medicine, cosmetics, and new material de...
A novel patterning–adsorption–plating process to additively fabricate copper patterns is developed. ...
Pulsed-wire evaporation (PWE) was used to synthesize copper nanoparticles having an average diameter...
In the past few years, the synthesis of Cu nanoparticles has attracted much attention because of its...
An aqueous inkjettable conductive fluid based on carbon coated copper nanoparticles has been develop...
In this study, a thermally triggered self-reducible copper ink is developed to print conductive patt...
Inkjet printing of electrode using copper nanoparticle ink is presented. Electrode was printed on a ...
Copper (Cu) nanoparticles as the metal nanoparticles in the conductive ink were synthesized using el...
In the ink-jet patterning process, conductive ink composed of metal nanoparticles and solutions, is ...
In the ink-jet patterning process, conductive ink composed of metal nanoparticles and solutions, is ...
In the ink-jet patterning process, conductive ink composed of metal nanoparticles and solutions, is ...
A modified electrolysis method was employed to synthesize copper nanoparticles for mass production. ...
In this study, Cu ion complex ink was successfully synthesized by a modified electrolysis method in ...
The production of microelectronics is currently dominated by subtractive manufacturing methods, whic...
A simple and low-cost process for fabricating conductive copper patterns on flexible polyimide subst...
Nanotechnology is used in a wide range of fields, including medicine, cosmetics, and new material de...
A novel patterning–adsorption–plating process to additively fabricate copper patterns is developed. ...
Pulsed-wire evaporation (PWE) was used to synthesize copper nanoparticles having an average diameter...
In the past few years, the synthesis of Cu nanoparticles has attracted much attention because of its...
An aqueous inkjettable conductive fluid based on carbon coated copper nanoparticles has been develop...
In this study, a thermally triggered self-reducible copper ink is developed to print conductive patt...
Inkjet printing of electrode using copper nanoparticle ink is presented. Electrode was printed on a ...