Textile-based flexible Lithium-Ion Batteries (LIBs) show promising mechanical flexibility that is appealing for a wide variety of wearable and flexible electronic applications. The flexibility of flexible LIBs nowadays is still limited. In addition, their power performance is too low to enable high-speed charging, due to the low conductivity of the textiles. Here, we develop highly electrically conductive metallic fabrics, which are fabricated by coating nanostructured Ni or Cu (nano-reliefs) on woven cotton fabrics, as current collectors to enable crumpled, high-power, and safe wearable LIBs. The nanostructured metal coating not only effectively increases the contact area between current collectors and active materials, but also shortens t...
Flexible energy storage devices have attracted wide attention because of the increasing requirement ...
Textile yarns undergo modifications for use in various smart applications such as energy storage, se...
We report the development of high-performance wearable supercapacitor fabrics based on flexible meta...
Next-generation electronics will be driven by miniaturized components tuned for wearable options, wh...
Wearable rechargeable batteries require electrode platforms that can withstand various physical moti...
The advancement of wearable electronics depends on the seamless integration of lightweight and stret...
Despite extensive research on flexible/wearable power sources, their structural stability and electr...
Metal nanowire nonwoven cloth (MNNC) is a metal sheet that has resulted from intertwined metal nanow...
Hindered by dendrite growth, unceasing volume change and repeated regeneration of solid-state electr...
ConspectusElectronics worn on the body have the potential to improve human health and the quality of...
Activated cotton textile (ACT) with porous tubular fibers embedded with NiS<sub>2</sub> nanobowls an...
A rollable and all-solid-state textile lithium battery based on fabric matrix and polymer electrolyt...
In recent years, continuous progress in electronic devices, especially in wearable devices, has attr...
Textile-based energy-storage devices are highly appealing for flexible and wearable electronics. Her...
The development of stretchable and wearable energy storage devices including lithium ion batteries a...
Flexible energy storage devices have attracted wide attention because of the increasing requirement ...
Textile yarns undergo modifications for use in various smart applications such as energy storage, se...
We report the development of high-performance wearable supercapacitor fabrics based on flexible meta...
Next-generation electronics will be driven by miniaturized components tuned for wearable options, wh...
Wearable rechargeable batteries require electrode platforms that can withstand various physical moti...
The advancement of wearable electronics depends on the seamless integration of lightweight and stret...
Despite extensive research on flexible/wearable power sources, their structural stability and electr...
Metal nanowire nonwoven cloth (MNNC) is a metal sheet that has resulted from intertwined metal nanow...
Hindered by dendrite growth, unceasing volume change and repeated regeneration of solid-state electr...
ConspectusElectronics worn on the body have the potential to improve human health and the quality of...
Activated cotton textile (ACT) with porous tubular fibers embedded with NiS<sub>2</sub> nanobowls an...
A rollable and all-solid-state textile lithium battery based on fabric matrix and polymer electrolyt...
In recent years, continuous progress in electronic devices, especially in wearable devices, has attr...
Textile-based energy-storage devices are highly appealing for flexible and wearable electronics. Her...
The development of stretchable and wearable energy storage devices including lithium ion batteries a...
Flexible energy storage devices have attracted wide attention because of the increasing requirement ...
Textile yarns undergo modifications for use in various smart applications such as energy storage, se...
We report the development of high-performance wearable supercapacitor fabrics based on flexible meta...