We report on a new surface modifier which simultaneously improves electrical, optical, and mechanical properties of silver nanowire-based stretchable transparent electrodes. The transparent electrodes treated with 11-aminoundecanoic acid achieve a low sheet resistance of 26.0 ohm/sq and a high transmittance of 90% with an excellent stretchability. These improvements are attributed to the effective formation of a strong chemical bond between silver nanowire networks and elastomeric substrates by 11-aminoundecanoic acid treatment. The resistance change of the optimized silver nanowire/poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) thin-films is only about 10% when the film is stretched by 120%. In addition, the chemical s...
Abstract Silver nanowires (AgNWs) with a low diameter, high aspect ratio, stable suspension, and eas...
Silver nanowire mesh electrodes represent a possible mass-manufacturable route toward transparent an...
One of the most important aspects that we need to consider in the design of intrinsically stretchabl...
We develop highly robust and stretchable conductive transparent electrodes based on silver nanowires...
We develop highly robust and stretchable conductive transparent electrodes based on silver nanowires...
The emergence of flexible and stretchable optoelectronics has motivated the development of new trans...
There is an increased need for research on flexible transparent electrodes (FTEs) because they are c...
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...
Transparent conductors for the next generation of soft electronic devices need to be highly stretcha...
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...
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 Silver nanowires (AgNWs) with a low diameter, high aspect ratio, stable suspension, and eas...
Silver nanowire mesh electrodes represent a possible mass-manufacturable route toward transparent an...
One of the most important aspects that we need to consider in the design of intrinsically stretchabl...
We develop highly robust and stretchable conductive transparent electrodes based on silver nanowires...
We develop highly robust and stretchable conductive transparent electrodes based on silver nanowires...
The emergence of flexible and stretchable optoelectronics has motivated the development of new trans...
There is an increased need for research on flexible transparent electrodes (FTEs) because they are c...
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...
Transparent conductors for the next generation of soft electronic devices need to be highly stretcha...
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...
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 Silver nanowires (AgNWs) with a low diameter, high aspect ratio, stable suspension, and eas...
Silver nanowire mesh electrodes represent a possible mass-manufacturable route toward transparent an...
One of the most important aspects that we need to consider in the design of intrinsically stretchabl...