Wearable electronics offer the combined advantages of both electronics and fabrics. In this article, we report the fabrication of wearable supercapacitors using cotton fabric as an essential component. Carbon nanotubes are conformally coated onto the cotton fibers, leading to a highly electrically conductive interconnecting network. The porous carbon nanotube coating functions as both active material and current collector in the supercapacitor. Aqueous lithium sulfate is used as the electrolyte in the devices, because it presents no safety concerns for human use. The supercapacitor shows high specific capacitance (~70-80 F·g -1 at 0.1 A·g -1 ) and cycling stability (negligible decay after 35,000 cycles). The extremely simple design and fabr...
Considering cost and flexibility, cotton thread is an ideal material for the fabrication of wearable...
© 2017, Springer Science+Business Media New York. With the fast development of portable and wearable...
The fibrous supercapacitor is a promising candidate for wearable energy-storage systems due to excel...
Wearable electronics offer the combined advantages of both electronics and fabrics. In this article,...
Recently there is strong interest in lightweight, flexible, and wearable electronics to meet the tec...
Wearable power devices were developed, using common textiles as the platform. An extremely simple di...
In this paper, we present a novel wearable flexible supercapacitor with the conductive carbon-nanotu...
High-performance supercapacitors (SCs) are promising energy storage devices to meet the pressing dem...
The ongoing revolution in electronics gave rise to advancements in the field of electronic textiles....
We report the development of high-performance wearable supercapacitor fabrics based on flexible meta...
Flexible and wearable supercapacitor (SC) fabrics have received considerable research interests rece...
High-performance textile-based energy storage systems with high energy and power densities alongside...
Printed graphene supercapacitors have the potential to empower tomorrow’s wearable electronics. We r...
Textile supercapacitors are a key enabler of future, wireless, textile based smart wearables. With h...
Herein, we report single-wall carbon nanotubes (SWCNT)/poly(3,4-ethylenedioxythiophene) polystyrene ...
Considering cost and flexibility, cotton thread is an ideal material for the fabrication of wearable...
© 2017, Springer Science+Business Media New York. With the fast development of portable and wearable...
The fibrous supercapacitor is a promising candidate for wearable energy-storage systems due to excel...
Wearable electronics offer the combined advantages of both electronics and fabrics. In this article,...
Recently there is strong interest in lightweight, flexible, and wearable electronics to meet the tec...
Wearable power devices were developed, using common textiles as the platform. An extremely simple di...
In this paper, we present a novel wearable flexible supercapacitor with the conductive carbon-nanotu...
High-performance supercapacitors (SCs) are promising energy storage devices to meet the pressing dem...
The ongoing revolution in electronics gave rise to advancements in the field of electronic textiles....
We report the development of high-performance wearable supercapacitor fabrics based on flexible meta...
Flexible and wearable supercapacitor (SC) fabrics have received considerable research interests rece...
High-performance textile-based energy storage systems with high energy and power densities alongside...
Printed graphene supercapacitors have the potential to empower tomorrow’s wearable electronics. We r...
Textile supercapacitors are a key enabler of future, wireless, textile based smart wearables. With h...
Herein, we report single-wall carbon nanotubes (SWCNT)/poly(3,4-ethylenedioxythiophene) polystyrene ...
Considering cost and flexibility, cotton thread is an ideal material for the fabrication of wearable...
© 2017, Springer Science+Business Media New York. With the fast development of portable and wearable...
The fibrous supercapacitor is a promising candidate for wearable energy-storage systems due to excel...