Elementary bidimensional circuitry made of single-wall carbon-nanotube-based conductors, self-grafted on different polymer films, is accomplished in an attempt to develop a simple technology for flexible and stretchable electronic devices. Unlike in other studies of polymer-carbon nanotube composites, no chemical functionalization of single-wall carbon nanotubes is necessary for stable grafting onto several polymeric surfaces, suggesting viable and cheap fabrication technologies for stretchable microdevices. Electrical characterization of both unstretched and strongly stretched conductors is provided, while an insight on the mechanisms of strong adhesion to the polymer is obtained by scanning electron microscopy of the surface composite. As...
Carbon nanotubes (CNTs) are a promising material for use as a flexible electrode in wearable energy ...
A key requirement for wearable electronics is an adequate and sustainable power source. Accordingly,...
There have been increasing demands and interests in stretchable sensors with the development of flex...
Elementary bidimensional circuitry made of single-wall carbon-nanotube-based conductors, self-grafte...
Aiming at the accomplishment of stretchable and elastic conductive devices, we report in this work e...
We report a novel method for synthesizing electrically conductive nano-brush (CNB) by physical graft...
The fabrication and characterization of stretchable carbon nanotube and graphene nanocomposite elect...
Carbon nanotube (CNT)-based flexible sensors have been intensively developed for physical sensing. H...
Stretchable electronics, such as stretchable electrodes and stretchable strain sensors, is vital for...
The increasing interest in stretchable conductive composite materials, that can be versatile and sui...
With the growing prominence of wearable electronic technology, there is a need to improve the mechan...
Flexible and stretchable electronics are highly desirable for next generation devices. However, stre...
Objective. The development of electrode arrays able to reliably record brain electrical activity is ...
Stretchable conductors can be used in various applications depending on their own characteristics. H...
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 ...
A key requirement for wearable electronics is an adequate and sustainable power source. Accordingly,...
There have been increasing demands and interests in stretchable sensors with the development of flex...
Elementary bidimensional circuitry made of single-wall carbon-nanotube-based conductors, self-grafte...
Aiming at the accomplishment of stretchable and elastic conductive devices, we report in this work e...
We report a novel method for synthesizing electrically conductive nano-brush (CNB) by physical graft...
The fabrication and characterization of stretchable carbon nanotube and graphene nanocomposite elect...
Carbon nanotube (CNT)-based flexible sensors have been intensively developed for physical sensing. H...
Stretchable electronics, such as stretchable electrodes and stretchable strain sensors, is vital for...
The increasing interest in stretchable conductive composite materials, that can be versatile and sui...
With the growing prominence of wearable electronic technology, there is a need to improve the mechan...
Flexible and stretchable electronics are highly desirable for next generation devices. However, stre...
Objective. The development of electrode arrays able to reliably record brain electrical activity is ...
Stretchable conductors can be used in various applications depending on their own characteristics. H...
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 ...
A key requirement for wearable electronics is an adequate and sustainable power source. Accordingly,...
There have been increasing demands and interests in stretchable sensors with the development of flex...