As an electrical double layer capacitor, dry-spun carbon nanotube yarn possesses relatively low specific capacitance. This can be significantly increased as a result of the pseudocapacitance of functional groups on the carbon nanotubes developed by oxidation using a gamma irradiation treatment in the presence of air. When coated with high-performance polyaniline nanowires, the gamma-irradiated carbon nanotube yarn acts as a high-strength reinforcement and a high-efficiency current collector in two-ply yarn supercapacitors for transporting charges generated along the long electrodes. The resulting supercapacitors demonstrate excellent electrochemical performance, cycle stability, and resistance to folding-unfolding that are required in weara...
Recently there is strong interest in lightweight, flexible, and wearable electronics to meet the tec...
Unique macrostructures known as spun carbon-nanotube fibers (CNT yarns) can be manufactured from ver...
Carbon nanotube (CNT) yarn, consisting of 23 µm diameter CNT filaments, can be used as capacitive el...
As an electrical double layer capacitor, dry-spun carbon nanotube yarn possesses relatively low spec...
Yarn-based supercapacitors having improved performance are needed for existing and emerging wearable...
Linear (fiber or yarn) supercapacitors have demonstrated remarkable cyclic electrochemical performan...
Electrochemical deposition of MnO2 onto carbon nanotube (CNT) yarn gives a high?performance, flexibl...
Linear (fiber or yarn) supercapacitors have demonstrated remarkable cyclic electrochemical performan...
The large-ion-accessible surface area of carbon nanotubes (CNTs) and graphene sheets formed as yarns...
Carbon nanotubes (CNTs) have attracted extensive attention in the past few years because of their ap...
Flexible, wearable, implantable and easily reconfigurable supercapacitors delivering high energy and...
AbstractCarbon nanotube (CNT) yarn, consisting of 23μm diameter CNT filaments, can be used as capaci...
Asymmetric supercapacitors are receiving much research interests due to their wide operating potenti...
Wearable electronic textiles that store capacitive energy are a next frontier in personalized electr...
Wearable power devices were developed, using common textiles as the platform. An extremely simple di...
Recently there is strong interest in lightweight, flexible, and wearable electronics to meet the tec...
Unique macrostructures known as spun carbon-nanotube fibers (CNT yarns) can be manufactured from ver...
Carbon nanotube (CNT) yarn, consisting of 23 µm diameter CNT filaments, can be used as capacitive el...
As an electrical double layer capacitor, dry-spun carbon nanotube yarn possesses relatively low spec...
Yarn-based supercapacitors having improved performance are needed for existing and emerging wearable...
Linear (fiber or yarn) supercapacitors have demonstrated remarkable cyclic electrochemical performan...
Electrochemical deposition of MnO2 onto carbon nanotube (CNT) yarn gives a high?performance, flexibl...
Linear (fiber or yarn) supercapacitors have demonstrated remarkable cyclic electrochemical performan...
The large-ion-accessible surface area of carbon nanotubes (CNTs) and graphene sheets formed as yarns...
Carbon nanotubes (CNTs) have attracted extensive attention in the past few years because of their ap...
Flexible, wearable, implantable and easily reconfigurable supercapacitors delivering high energy and...
AbstractCarbon nanotube (CNT) yarn, consisting of 23μm diameter CNT filaments, can be used as capaci...
Asymmetric supercapacitors are receiving much research interests due to their wide operating potenti...
Wearable electronic textiles that store capacitive energy are a next frontier in personalized electr...
Wearable power devices were developed, using common textiles as the platform. An extremely simple di...
Recently there is strong interest in lightweight, flexible, and wearable electronics to meet the tec...
Unique macrostructures known as spun carbon-nanotube fibers (CNT yarns) can be manufactured from ver...
Carbon nanotube (CNT) yarn, consisting of 23 µm diameter CNT filaments, can be used as capacitive el...