Textile-based energy-storage devices are highly appealing for flexible and wearable electronics. Here, a 3D textile cathode with high loading, which couples hollow multishelled structures (HoMSs) with conductive metallic fabric, is reported for high-performance flexible lithium-ion batteries. V2O5 HoMSs prepared by sequential templating approach are used as active materials and conductive metallic fabrics are applied as current collectors and flexible substrates. Taking advantage of the desirable structure of V2O5 HoMSs that effectively buffers the volume expansion and alleviates the stress/strain during repeated Li-insertion/extraction processes, as well as the robust flexible metallic-fabric current collector, the as-prepared fabric devic...
Flexible and high-performance batteries are urgently required for powering flexible/wearable electro...
Mechanically robust battery electrodes are desired for applications in wearable devices, flexible di...
The demand for lithium ion batteries (LIBs) in various flexible mobile electronic devices is continu...
The search for an appropriate flexible cathode is pivotal to expediting the development of flexible ...
The development of stretchable and wearable energy storage devices including lithium ion batteries a...
The advancement of wearable electronics depends on the seamless integration of lightweight and stret...
Textile-based flexible Lithium-Ion Batteries (LIBs) show promising mechanical flexibility that is ap...
A rollable and all-solid-state textile lithium battery based on fabric matrix and polymer electrolyt...
© 2018 The advancements in wearable electronic devices make it urgent to develop high-performance fl...
Abstract Three-dimensional (3D) free-standing nanostructured materials have been proven to be one of...
Despite extensive studies on lithium-metal batteries (LMBs) that have garnered considerable attentio...
The increasing demand for wearable devices ultimately requires the development of energy storage dev...
Although flexible power sources are crucial for the realization next-generation flexible electronics...
Next-generation electronics will be driven by miniaturized components tuned for wearable options, wh...
Flexible Li–S batteries have great potential for next-generation energy storage which can meet the r...
Flexible and high-performance batteries are urgently required for powering flexible/wearable electro...
Mechanically robust battery electrodes are desired for applications in wearable devices, flexible di...
The demand for lithium ion batteries (LIBs) in various flexible mobile electronic devices is continu...
The search for an appropriate flexible cathode is pivotal to expediting the development of flexible ...
The development of stretchable and wearable energy storage devices including lithium ion batteries a...
The advancement of wearable electronics depends on the seamless integration of lightweight and stret...
Textile-based flexible Lithium-Ion Batteries (LIBs) show promising mechanical flexibility that is ap...
A rollable and all-solid-state textile lithium battery based on fabric matrix and polymer electrolyt...
© 2018 The advancements in wearable electronic devices make it urgent to develop high-performance fl...
Abstract Three-dimensional (3D) free-standing nanostructured materials have been proven to be one of...
Despite extensive studies on lithium-metal batteries (LMBs) that have garnered considerable attentio...
The increasing demand for wearable devices ultimately requires the development of energy storage dev...
Although flexible power sources are crucial for the realization next-generation flexible electronics...
Next-generation electronics will be driven by miniaturized components tuned for wearable options, wh...
Flexible Li–S batteries have great potential for next-generation energy storage which can meet the r...
Flexible and high-performance batteries are urgently required for powering flexible/wearable electro...
Mechanically robust battery electrodes are desired for applications in wearable devices, flexible di...
The demand for lithium ion batteries (LIBs) in various flexible mobile electronic devices is continu...