The fabrication and characterization of stretchable carbon nanotube and graphene nanocomposite electrodes on different rubber substrates is reported. Electrodes are fabricated at low temperatures using solution processable carbon nanomaterials. Rubber substrates are stretched while performing simultaneous electrical measurements for the electrodes. During 20% elongation of rubber substrates a 2- to 120-fold increase in the electrode resistance was observed, depending on the sample. The relative increase in the resistance with stretching was smaller in the case of graphene electrodes, whereas the resistance change during the elastomer relaxation was smaller in the case of carbon nanotube electrodes. Our results suggest that solution processe...
Conductive rubber nanocomposites were prepared by dispersing conductive nanotubes (CNT) in thermorev...
\u3cp\u3eConductive rubber nanocomposites were prepared by dispersing conductive nanotubes (CNT) in ...
ABSTRACT: Flexible and stretchable strain sensors have emerged as promising components for integrati...
Stretchable electronics, such as stretchable electrodes and stretchable strain sensors, is vital for...
The 4th industrial revolution will stimulate a rising demand on novel sensor and actuator systems. B...
Elementary bidimensional circuitry made of single-wall carbon-nanotube-based conductors, self-grafte...
The increasing interest in stretchable conductive composite materials, that can be versatile and sui...
We report a new fabrication method for a fully stretchable supercapacitor based on single wall carbo...
We developed highly stretchable, flexible and very soft conductors based on the carbon nanotubes (CN...
Stretchable and flexible sensors attached onto the surface of the human body can perceive external s...
Conventional metallic strain sensors are flexible, but they can sustain maximum strains of only ~5%,...
Carbon nanotubes (CNTs) are a promising material for use as a flexible electrode in wearable energy ...
Carbon nanotubes (CNTs) are a promising material for use as a flexible electrode in wearable energy ...
The rapid growth of wearable electronics has generated an influx of research in developing highly fl...
Stretchable and/or flexible electrodes and their associated electronic devices have attracted great ...
Conductive rubber nanocomposites were prepared by dispersing conductive nanotubes (CNT) in thermorev...
\u3cp\u3eConductive rubber nanocomposites were prepared by dispersing conductive nanotubes (CNT) in ...
ABSTRACT: Flexible and stretchable strain sensors have emerged as promising components for integrati...
Stretchable electronics, such as stretchable electrodes and stretchable strain sensors, is vital for...
The 4th industrial revolution will stimulate a rising demand on novel sensor and actuator systems. B...
Elementary bidimensional circuitry made of single-wall carbon-nanotube-based conductors, self-grafte...
The increasing interest in stretchable conductive composite materials, that can be versatile and sui...
We report a new fabrication method for a fully stretchable supercapacitor based on single wall carbo...
We developed highly stretchable, flexible and very soft conductors based on the carbon nanotubes (CN...
Stretchable and flexible sensors attached onto the surface of the human body can perceive external s...
Conventional metallic strain sensors are flexible, but they can sustain maximum strains of only ~5%,...
Carbon nanotubes (CNTs) are a promising material for use as a flexible electrode in wearable energy ...
Carbon nanotubes (CNTs) are a promising material for use as a flexible electrode in wearable energy ...
The rapid growth of wearable electronics has generated an influx of research in developing highly fl...
Stretchable and/or flexible electrodes and their associated electronic devices have attracted great ...
Conductive rubber nanocomposites were prepared by dispersing conductive nanotubes (CNT) in thermorev...
\u3cp\u3eConductive rubber nanocomposites were prepared by dispersing conductive nanotubes (CNT) in ...
ABSTRACT: Flexible and stretchable strain sensors have emerged as promising components for integrati...