Recent advances in flexible electronics have highlighted the importance of high throughput, digital additive microfabrication techniques. In this work, we demonstrate the combination of laser printing and laser sintering of a novel copper nanoparticle ink onto flexible substrates in order to produce oxide free conductive copper patterns in ambient atmospheric conditions. The printed patterns exhibit high reproducibility, very low resistivity (about 2x bulk), and negligible oxidation according to Raman spectroscopy. The process has been employed for the fabrication of an on-chip antenna on a flexible substrate for use in combination with a flexible circuit, in applications where a small form factor and simplicity of integration are required ...
In the printed electronics industry, conductive copper colloid inks have drawn a great deal of inter...
Abstract Additively printed circuits provide advantages in reduced waste, rapid prototyping, and ver...
Additive Manufacturing (AM) of electrically conductive copper (Cu) parts is of significant research ...
In this study, we developed an effective and rapid process for nanoscale ink printing, direct laser ...
Copper is a promising electronic material due to low cost and high electrical conductivity. However,...
<div><p>Flexible electronics opened a new class of future electronics. The foldable, light and durab...
Flexible electronics opened a new class of future electronics. The foldable, light and durable natur...
Development of cost-effective and environmentally friendly manufacturing methods will enable importa...
The development of printing technologies has enabled the realization of electric circuit fabrication...
Symposium CC on Laser and Plasma Processing for Advanced Applications in Material Science held durin...
International audienceThis paper presents our first results on printed copper connections on flexibl...
Printed intelligence is a promising new technology to produce low-cost electronics. Non-conductive c...
Silver (Ag) nano-ink is widely used to fabricate the micro-patterns of flexible electronic devices o...
In the printed electronics industry, conductive copper colloid inks have drawn a great deal of inter...
Abstract Additively printed circuits provide advantages in reduced waste, rapid prototyping, and ver...
Additive Manufacturing (AM) of electrically conductive copper (Cu) parts is of significant research ...
In this study, we developed an effective and rapid process for nanoscale ink printing, direct laser ...
Copper is a promising electronic material due to low cost and high electrical conductivity. However,...
<div><p>Flexible electronics opened a new class of future electronics. The foldable, light and durab...
Flexible electronics opened a new class of future electronics. The foldable, light and durable natur...
Development of cost-effective and environmentally friendly manufacturing methods will enable importa...
The development of printing technologies has enabled the realization of electric circuit fabrication...
Symposium CC on Laser and Plasma Processing for Advanced Applications in Material Science held durin...
International audienceThis paper presents our first results on printed copper connections on flexibl...
Printed intelligence is a promising new technology to produce low-cost electronics. Non-conductive c...
Silver (Ag) nano-ink is widely used to fabricate the micro-patterns of flexible electronic devices o...
In the printed electronics industry, conductive copper colloid inks have drawn a great deal of inter...
Abstract Additively printed circuits provide advantages in reduced waste, rapid prototyping, and ver...
Additive Manufacturing (AM) of electrically conductive copper (Cu) parts is of significant research ...