We conducted ink-jet printing of copper (Cu) conductive ink on polyimide (PI) film to form Cu conductive patterns and determine the correlation between Cu ink based on Cu complex and flexible substrate. First, the oxygen plasma treatment was performed to modify the surface property of the PI film, and contact angles were measured to confirm the change of its surface property. Thus, we confirmed the decrease of contact angles and optimized plasma treatment parameters. Then Cu conductive lines were formed on unmodified and modified PI films using ink-jet printing, and the printed lines were reduced and sintered by thermal treatment in hydrogen (H(2)) atmosphere at 200 degrees C. The formed Cu conductive lines were analyzed by an optical micro...
The aim of this work is preparation and investigation of copper conductive paths by printing with a ...
The emerging technology of printed microelectronics involving the use of conductive inks in conjunct...
Inkjet-printed electronics using metal particles typically lack electrical conductivity and interfac...
We conducted ink-jet printing of copper (Cu) conductive ink on polyimide (PI) film to form Cu conduc...
In this study, Cu ion complex ink was successfully synthesized by a modified electrolysis method in ...
In this study, a thermally triggered self-reducible copper ink is developed to print conductive patt...
Ink-jet printed conductive copper patterns with enhanced substrate adhesion were fabricated using a ...
Low temperature sintering techniques are crucial in developing flexible printed electronics. In this...
International audienceThis paper presents our first results on printed copper connections on flexibl...
A simple and low-cost process for fabricating conductive copper patterns on flexible polyimide subst...
Printable functional materials opened up a new area of applications that have immense market potenti...
A reliable and low-cost method to synthesize high-adhesion and low-resistivity copper patterns on fl...
The emerging technology of printed microelectronics involving the use of conductive inks in conjunct...
Printed electronics is a key technology for realizing next generation of wearable electronics that a...
Inkjet-printed electronics using metal particles typically lack electrical conductivity and interfac...
The aim of this work is preparation and investigation of copper conductive paths by printing with a ...
The emerging technology of printed microelectronics involving the use of conductive inks in conjunct...
Inkjet-printed electronics using metal particles typically lack electrical conductivity and interfac...
We conducted ink-jet printing of copper (Cu) conductive ink on polyimide (PI) film to form Cu conduc...
In this study, Cu ion complex ink was successfully synthesized by a modified electrolysis method in ...
In this study, a thermally triggered self-reducible copper ink is developed to print conductive patt...
Ink-jet printed conductive copper patterns with enhanced substrate adhesion were fabricated using a ...
Low temperature sintering techniques are crucial in developing flexible printed electronics. In this...
International audienceThis paper presents our first results on printed copper connections on flexibl...
A simple and low-cost process for fabricating conductive copper patterns on flexible polyimide subst...
Printable functional materials opened up a new area of applications that have immense market potenti...
A reliable and low-cost method to synthesize high-adhesion and low-resistivity copper patterns on fl...
The emerging technology of printed microelectronics involving the use of conductive inks in conjunct...
Printed electronics is a key technology for realizing next generation of wearable electronics that a...
Inkjet-printed electronics using metal particles typically lack electrical conductivity and interfac...
The aim of this work is preparation and investigation of copper conductive paths by printing with a ...
The emerging technology of printed microelectronics involving the use of conductive inks in conjunct...
Inkjet-printed electronics using metal particles typically lack electrical conductivity and interfac...