Reverse-offset printing (RO) is a promising method to fabricate high-resolution line structures using conductive nanoparticle inks. In this paper, a laboratory-scale RO equipment is used to develop a roll-to-roll process. This paper focuses on printability and performance of conductive high-resolution lines. Critical interactions between the ink, plastic substrate and parts of the printing equipment (PDMS blanket and Ni-stamp) are studied. Resolution down to 1 μm is achieved with a homogeneous line edge structure suggesting potential for further resolution enhancements. Conductivity of the printed lines is very close to values reported in literature as achieved using other printing techniques
High speed reel-to-reel manufacturing of electrically conductive polyaniline-dodecylbenzenesulfonic ...
There has been a great interest in the realization of low-cost electronic applications such as item-...
For example high-density redistribution layers (RDL) require narrow conductor width and low enough r...
Reverse-offset printing (RO) is a promising method to fabricate high-resolution line structures usin...
Printed electronics has advanced during the recent decades in applications such as organic photovolt...
Reverse-offset printing (ROP) is a novel printing technique capable of forming electronics-industry-...
In this work, we investigate different printing technologies suitable for mass production of millime...
Paper has many attractions as a substrate for the manufacture of flexible electronics, particularly ...
In this work, we investigate different printing technologies suitable for mass production of millime...
The technological advancement in the field of printed electronics over roll-to-roll (R2R) platform h...
Abstract In gravure offset printing, ink is transferred with the help of an offset material from a p...
Roll-to-roll nanoimprint lithography (rrNIL) process, in which a patterned roll is used to transfer ...
We investigate the feasibility of roll-to-roll reverse offset (R2R-RO) printing technology for the m...
Metallic nanoparticle inks and pastes are recognized as an enabling technology for printing high-qua...
Conventional printing technologies such as inkjet, screen, and gravure printing have been used to fa...
High speed reel-to-reel manufacturing of electrically conductive polyaniline-dodecylbenzenesulfonic ...
There has been a great interest in the realization of low-cost electronic applications such as item-...
For example high-density redistribution layers (RDL) require narrow conductor width and low enough r...
Reverse-offset printing (RO) is a promising method to fabricate high-resolution line structures usin...
Printed electronics has advanced during the recent decades in applications such as organic photovolt...
Reverse-offset printing (ROP) is a novel printing technique capable of forming electronics-industry-...
In this work, we investigate different printing technologies suitable for mass production of millime...
Paper has many attractions as a substrate for the manufacture of flexible electronics, particularly ...
In this work, we investigate different printing technologies suitable for mass production of millime...
The technological advancement in the field of printed electronics over roll-to-roll (R2R) platform h...
Abstract In gravure offset printing, ink is transferred with the help of an offset material from a p...
Roll-to-roll nanoimprint lithography (rrNIL) process, in which a patterned roll is used to transfer ...
We investigate the feasibility of roll-to-roll reverse offset (R2R-RO) printing technology for the m...
Metallic nanoparticle inks and pastes are recognized as an enabling technology for printing high-qua...
Conventional printing technologies such as inkjet, screen, and gravure printing have been used to fa...
High speed reel-to-reel manufacturing of electrically conductive polyaniline-dodecylbenzenesulfonic ...
There has been a great interest in the realization of low-cost electronic applications such as item-...
For example high-density redistribution layers (RDL) require narrow conductor width and low enough r...