Highly stretchable, actuatable, electrically conductive knitted textiles based on Spandex (SPX)/CNT (carbon nanotube) composite yarns were prepared by an integrated knitting procedure. SPX filaments were continuously wrapped with CNT aerogel sheets and supplied directly to an interlocking circular knitting machine to form three-dimensional electrically conductive and stretchable textiles. By adjusting the SPX/CNT feed ratio, the fabric electrical conductivities could be tailored in the range of 870 to 7092 S/m. The electrical conductivity depended on tensile strain, with a linear and largely hysteresis-free resistance change occurring on loading and unloading between 0% and 80% strain. Electrothermal heating of the stretched fabric caused l...
The increasing demand for wearable electronic devices has made the development of highly elastic str...
In this study, a commercially available Spandex multifilament yarn was coated with a thermoplastic p...
Conductive cotton fabric was prepared by coating single-wall carbon nanotubes (CNTs) on a knitted co...
Highly stretchable, actuatable, electrically conductive knitted textiles based on Spandex (SPX)/CNT ...
Highly stretchable, actuatable, electrically conductive knitted textiles based on Spandex (SPX)/CNT ...
Highly stretchable, actuatable, electrically conductive knitted textiles based on Spandex (SPX)/CNT ...
Incorporation of carbon nanotubes (CNTs) into textiles without sacrificing their intrinsic propertie...
Incorporation of carbon nanotubes (CNTs) into textiles without sacrificing their intrinsic propertie...
Carbon nanotube (CNT) yarns are promising for wearable electronic applications due to their excellen...
Rapid growth of personal electronics with concurrent research into telerehabilitation solutions disc...
The development of wearable electronic devices has greatly stimulated the research interest of texti...
Wearable and stretchable electronics including various conductors and sensors are featured with thei...
The demand for stretchable, flexible, and wearable multifunctional devices based on conductive nanom...
Electrochemically or electrothermally driven twisted/coiled carbon nanotube (CNT) yarn actuators are...
We studied the use of carbon-nanotube- (CNT)-based strain sensors as components of a textile-based, ...
The increasing demand for wearable electronic devices has made the development of highly elastic str...
In this study, a commercially available Spandex multifilament yarn was coated with a thermoplastic p...
Conductive cotton fabric was prepared by coating single-wall carbon nanotubes (CNTs) on a knitted co...
Highly stretchable, actuatable, electrically conductive knitted textiles based on Spandex (SPX)/CNT ...
Highly stretchable, actuatable, electrically conductive knitted textiles based on Spandex (SPX)/CNT ...
Highly stretchable, actuatable, electrically conductive knitted textiles based on Spandex (SPX)/CNT ...
Incorporation of carbon nanotubes (CNTs) into textiles without sacrificing their intrinsic propertie...
Incorporation of carbon nanotubes (CNTs) into textiles without sacrificing their intrinsic propertie...
Carbon nanotube (CNT) yarns are promising for wearable electronic applications due to their excellen...
Rapid growth of personal electronics with concurrent research into telerehabilitation solutions disc...
The development of wearable electronic devices has greatly stimulated the research interest of texti...
Wearable and stretchable electronics including various conductors and sensors are featured with thei...
The demand for stretchable, flexible, and wearable multifunctional devices based on conductive nanom...
Electrochemically or electrothermally driven twisted/coiled carbon nanotube (CNT) yarn actuators are...
We studied the use of carbon-nanotube- (CNT)-based strain sensors as components of a textile-based, ...
The increasing demand for wearable electronic devices has made the development of highly elastic str...
In this study, a commercially available Spandex multifilament yarn was coated with a thermoplastic p...
Conductive cotton fabric was prepared by coating single-wall carbon nanotubes (CNTs) on a knitted co...