Silver nanowires (AgNWs) are excellent candidate electrode materials in next-generation wearable devices due to their high flexibility and high conductivity. In particular, patterning techniques for AgNWs electrode manufacture are very important in the roll-to-roll printing process to achieve high throughput and special performance production. It is also essential to realize a non-contact mode patterning for devices in order to keep the pre-patterned components away from mechanical damages. Here, we report a successful non-contact patterning of AgNWs-based stretchable and transparent electrodes by laser-induced forward transfer (LIFT) technique. The technique was used to fabricate a 100% stretchable electrode with a width of 200 μm and elec...
We report on a new surface modifier which simultaneously improves electrical, optical, and mechanica...
Wearable electronics have showed their profound impact in military, sports, medical and other fields...
The lithographic process for flexible transparent electrodes is essential for constructing wearable ...
Silver nanowires (AgNWs) are excellent candidate electrode materials in next-generation wearable dev...
The roll-to-roll process is synonymous with newspaper production. If a similar high-throughput proce...
Mechanically ultra-robust, transparent and flexible electrodes assembled from silver nanowires (Ag N...
The emergence of flexible and stretchable optoelectronics has motivated the development of new trans...
Conventional printing technologies such as inkjet, screen, and gravure printing have been used to fa...
One-dimensional nanomaterials have drawn attention as an alternative electrode material for stretcha...
Ag nanowire (NW) networks have exquisite optical and electrical properties which make them ideal can...
Transparent conductors for the next generation of soft electronic devices need to be highly stretcha...
Patterning of silver nanowires (AgNWs) used in fabricating flexible and transparent electrodes (FTEs...
Network structures of metal nanowires are a promising candidate for producing a wide range of flexib...
Abstract To achieve adhesive and conformable wearable electronics, improving stretchable transparent...
We report on a new surface modifier which simultaneously improves electrical, optical, and mechanica...
Wearable electronics have showed their profound impact in military, sports, medical and other fields...
The lithographic process for flexible transparent electrodes is essential for constructing wearable ...
Silver nanowires (AgNWs) are excellent candidate electrode materials in next-generation wearable dev...
The roll-to-roll process is synonymous with newspaper production. If a similar high-throughput proce...
Mechanically ultra-robust, transparent and flexible electrodes assembled from silver nanowires (Ag N...
The emergence of flexible and stretchable optoelectronics has motivated the development of new trans...
Conventional printing technologies such as inkjet, screen, and gravure printing have been used to fa...
One-dimensional nanomaterials have drawn attention as an alternative electrode material for stretcha...
Ag nanowire (NW) networks have exquisite optical and electrical properties which make them ideal can...
Transparent conductors for the next generation of soft electronic devices need to be highly stretcha...
Patterning of silver nanowires (AgNWs) used in fabricating flexible and transparent electrodes (FTEs...
Network structures of metal nanowires are a promising candidate for producing a wide range of flexib...
Abstract To achieve adhesive and conformable wearable electronics, improving stretchable transparent...
We report on a new surface modifier which simultaneously improves electrical, optical, and mechanica...
Wearable electronics have showed their profound impact in military, sports, medical and other fields...
The lithographic process for flexible transparent electrodes is essential for constructing wearable ...