Transparent electrodes based on conventional indium–tin oxide (ITO) can hardly meet the requirements of future generations of stretchable electronic devices, including artificial skins, stretchable displays, sensors, and actuators, because they cannot retain high conductivity under substantial stretching and bending deformation. Here we suggest a new approach for fabricating highly stretchable and transparent electrodes with good stability in environments where they would be stretched repeatedly. We designed polyurethane–urea (PUU), a urethane-based polymer, to enhance the adhesion between Ag nanowires (AgNWs) and poly(dimethylsiloxane) (PDMS). The adhesion could be further improved when irradiated by intense pulsed light (IPL). After deli...
Stretchable electronics has attracted great interest with compelling potential applications that req...
Silver nanowires (AgNWs) have emerged as a promising nanomaterial for next generation stretchable el...
Silver nanowires (AgNWs) have emerged as a promising nanomaterial for next generation stretchable el...
Transparent electrodes based on conventional indium–tin oxide (ITO) can hardly meet the requirements...
Transparent electrodes based on conventional indium–tin oxide (ITO) can hardly meet the requirements...
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...
One of the most important aspects that we need to consider in the design of intrinsically stretchabl...
The emergence of flexible and stretchable optoelectronics has motivated the development of new trans...
We present new flexible, transparent, and conductive coatings composed of an annealed silver nanowir...
We present new flexible, transparent, and conductive coatings composed of an annealed silver nanowir...
We present new flexible, transparent, and conductive coatings composed of an annealed silver nanowir...
We report stretchable metal-mesh transparent electrodes (TEs) with excellent electrical conductivity...
The recent advent of unprecedented wearable applications engendered the need for stretchable electro...
Transparent electrodes with superior flexibility and stretchability as well as good electrical and o...
Stretchable electronics has attracted great interest with compelling potential applications that req...
Silver nanowires (AgNWs) have emerged as a promising nanomaterial for next generation stretchable el...
Silver nanowires (AgNWs) have emerged as a promising nanomaterial for next generation stretchable el...
Transparent electrodes based on conventional indium–tin oxide (ITO) can hardly meet the requirements...
Transparent electrodes based on conventional indium–tin oxide (ITO) can hardly meet the requirements...
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...
One of the most important aspects that we need to consider in the design of intrinsically stretchabl...
The emergence of flexible and stretchable optoelectronics has motivated the development of new trans...
We present new flexible, transparent, and conductive coatings composed of an annealed silver nanowir...
We present new flexible, transparent, and conductive coatings composed of an annealed silver nanowir...
We present new flexible, transparent, and conductive coatings composed of an annealed silver nanowir...
We report stretchable metal-mesh transparent electrodes (TEs) with excellent electrical conductivity...
The recent advent of unprecedented wearable applications engendered the need for stretchable electro...
Transparent electrodes with superior flexibility and stretchability as well as good electrical and o...
Stretchable electronics has attracted great interest with compelling potential applications that req...
Silver nanowires (AgNWs) have emerged as a promising nanomaterial for next generation stretchable el...
Silver nanowires (AgNWs) have emerged as a promising nanomaterial for next generation stretchable el...