Low-dimensional nanomaterials have attracted considerable attention for next-generation flexible energy devices owing to their excellent electrochemical properties and superior flexibility. Herein, uniform Tellurium nanotubes (Te NTs) were prepared through a facile hydrothermal method, and then a flexible and freestanding electrode was fabricated with Te NTs as active materials and a small amount of nanofibrillated celluloses (NFCs) as a flexible matrix through a vacuum filtration method without adding extra conductive carbon or a binder. The resulting Te-based electrode exhibits a high volumetric capacity of 1512 mAh cm−3 at 200 mA g−1, and delivers admirable cyclic stability (capacity retention of 104% over 300 cycles) and excellent rate ...
Liquid metals can be surface activated to generate a controlled galvanic potential by immersing them...
International audienceTemplate-free electrodeposition of high aspect ratio Te nanowires is presented...
Tellurium (Te), the most metallic semiconductor, has been widely explored in recent decades owing to...
Low-dimensional nanomaterials have attracted considerable attention for next-generation flexible ene...
Rechargeable lithium-ion batteries (LIBs) are regarded as promising battery technology in the applic...
High‐charge‐capacity sodium‐ and lithium‐ion battery anodes based on tin telluride are reported for ...
The bacterial respiration process enables the facile and morphologically-selective preparation of na...
We report the synthesis of cobalt-iron (Co-Fe) decorated tellurium nanotubes (Te NTs) using semicond...
Currently, metal oxides and chalcogenide nanostructures are the most visible energy sources. Numerou...
The tubular and layered structure of titanate nanotubes facilitate ion movement and provide a high r...
Flexible and highly conductive single-walled carbon nanotube/polycellulose papers (SWCNT/PPs) were d...
Lithium-tellurium (Li-Te) batteries are attractive for energy storage owing to their high theoretica...
We herein report a gas-solid transformation mechanism for the surfactant-free synthesis of Te NWs at...
The fundamental understanding of the relationship between the nanostructure of an electrode and its ...
Titanate nanotubes are promising materials for Li-ion battery anodes because of their special morpho...
Liquid metals can be surface activated to generate a controlled galvanic potential by immersing them...
International audienceTemplate-free electrodeposition of high aspect ratio Te nanowires is presented...
Tellurium (Te), the most metallic semiconductor, has been widely explored in recent decades owing to...
Low-dimensional nanomaterials have attracted considerable attention for next-generation flexible ene...
Rechargeable lithium-ion batteries (LIBs) are regarded as promising battery technology in the applic...
High‐charge‐capacity sodium‐ and lithium‐ion battery anodes based on tin telluride are reported for ...
The bacterial respiration process enables the facile and morphologically-selective preparation of na...
We report the synthesis of cobalt-iron (Co-Fe) decorated tellurium nanotubes (Te NTs) using semicond...
Currently, metal oxides and chalcogenide nanostructures are the most visible energy sources. Numerou...
The tubular and layered structure of titanate nanotubes facilitate ion movement and provide a high r...
Flexible and highly conductive single-walled carbon nanotube/polycellulose papers (SWCNT/PPs) were d...
Lithium-tellurium (Li-Te) batteries are attractive for energy storage owing to their high theoretica...
We herein report a gas-solid transformation mechanism for the surfactant-free synthesis of Te NWs at...
The fundamental understanding of the relationship between the nanostructure of an electrode and its ...
Titanate nanotubes are promising materials for Li-ion battery anodes because of their special morpho...
Liquid metals can be surface activated to generate a controlled galvanic potential by immersing them...
International audienceTemplate-free electrodeposition of high aspect ratio Te nanowires is presented...
Tellurium (Te), the most metallic semiconductor, has been widely explored in recent decades owing to...