This work tackles the complicated problem of clump formation and entanglement of high aspect ratio copper nanowires, due to which a well dispersed solution for use as a true ink for drawable electronics has not been made until now. Through rheology studies even a hard to use material like copper nanowires was tailored to be made into a highly efficient conductive ink with only 2 vol % or 18.28 wt % loading which is far lower than existing nanoparticle based inks. This versatile ink can be applied onto various substrates such as paper, PET, PDMS and latex. By using the ink in a roller ball pen, a bending sensor device was simply drawn on paper, which demonstrated detection of various degrees of convex bending and was highly durable as shown ...
Inkjet-printed electronics using metal particles typically lack electrical conductivity and interfac...
Electrically conductive inks are the foundations of printed electronics as they allow to print circu...
Printed flexible electronics have been widely studied for their potential use in various application...
Printable functional materials opened up a new area of applications that have immense market potenti...
In the printed electronics industry, conductive copper colloid inks have drawn a great deal of inter...
International audienceThis paper presents our first results on printed copper connections on flexibl...
In this study, a thermally triggered self-reducible copper ink is developed to print conductive patt...
The aim of this work is preparation and investigation of copper conductive paths by printing with a ...
This paper is focused on copper–nickel nanoparticle resistive inks compatible with thick printed cop...
Printed electronics is an emerging manufacturing technology with applications in consumer electronic...
In this study, Cu ion complex ink was successfully synthesized by a modified electrolysis method in ...
Printed electronics is a key technology for realizing next generation of wearable electronics that a...
This research focused on the stretchable conductive ink using copper fillers. Nowadays, a lot of app...
Recently, great stretchability progress has been witnessed in elastic electronics. However, such ele...
Nanotechnology is used in a wide range of fields, including medicine, cosmetics, and new material de...
Inkjet-printed electronics using metal particles typically lack electrical conductivity and interfac...
Electrically conductive inks are the foundations of printed electronics as they allow to print circu...
Printed flexible electronics have been widely studied for their potential use in various application...
Printable functional materials opened up a new area of applications that have immense market potenti...
In the printed electronics industry, conductive copper colloid inks have drawn a great deal of inter...
International audienceThis paper presents our first results on printed copper connections on flexibl...
In this study, a thermally triggered self-reducible copper ink is developed to print conductive patt...
The aim of this work is preparation and investigation of copper conductive paths by printing with a ...
This paper is focused on copper–nickel nanoparticle resistive inks compatible with thick printed cop...
Printed electronics is an emerging manufacturing technology with applications in consumer electronic...
In this study, Cu ion complex ink was successfully synthesized by a modified electrolysis method in ...
Printed electronics is a key technology for realizing next generation of wearable electronics that a...
This research focused on the stretchable conductive ink using copper fillers. Nowadays, a lot of app...
Recently, great stretchability progress has been witnessed in elastic electronics. However, such ele...
Nanotechnology is used in a wide range of fields, including medicine, cosmetics, and new material de...
Inkjet-printed electronics using metal particles typically lack electrical conductivity and interfac...
Electrically conductive inks are the foundations of printed electronics as they allow to print circu...
Printed flexible electronics have been widely studied for their potential use in various application...