Among the various semiconductor materials, zinc telluride possesses the lowest electron affinity and ultrafast charge separation capability, facilitating improved charge transfer kinetics. In addition, ZnTe has a relatively high density, contributing to high volumetric capacity. Here, 1D N-doped carbon-coated ZnTe core-shell nanowires (ZnTe@C) are designed and prepared via a facile ion-exchange and carbonization technique. When evaluated as anode for metal ion batteries, it demonstrates superior electrochemical performance in both Li and Na ion storage, including high gravimetric and volumetric capacities (1119 mA h g−1 and 906 mA h cm−3, respectively, at 100 mA g−1 for Li ion storage), excellent high-rate capability, and long-term cycling ...
The sluggish diffusion kinetics of divalent Zn2+ in cathode and the limited availability of active m...
Highlights: - Unique “Janus” interfacial assemble strategy of 2D MXene nanosheets was proposed firs...
Na-ion batteries and K-ion batteries are promising alternatives to vastly used lithium-ion batteries...
© 2020 Wiley-VCH GmbH Among the various semiconductor materials, zinc telluride possesses the lowest...
Potassium-ion batteries hold practical potential for large-scale energy storage owing to their appea...
The strategic design of the cathode is a critical feature for high-performance and long-lasting reve...
N-doped hierarchical porous carbon with uniaxially packed carbon nanotubes (CNTs) was prepared by co...
Transition metal selenides with high theoretical capacities possess attractive potential as anode ma...
Branched Sn78Ge22@carbon core-shell nanowires were prepared by thermal annealing of butyl-capped Sn7...
Conversion-type anodes with high theoretical capacity have attracted enormous interest for lithium s...
Well-aligned Zn3P2 nanowires-assembly bundles/Ti foil integrated anodes were for the first time succ...
Developing low-cost, high-capacity, high-rate, and robust earth-abundant electrode materials for ene...
For large-scale energy storage devices, lithium-ion batteries (LIBs) are leading candidates for appl...
ZnTe amorphous semiconductor nanowires array was electrodeposited into the nanochannels of ion-track...
Nowadays, the decreasing availability of fossil fuels has made the demand for efficient storage and ...
The sluggish diffusion kinetics of divalent Zn2+ in cathode and the limited availability of active m...
Highlights: - Unique “Janus” interfacial assemble strategy of 2D MXene nanosheets was proposed firs...
Na-ion batteries and K-ion batteries are promising alternatives to vastly used lithium-ion batteries...
© 2020 Wiley-VCH GmbH Among the various semiconductor materials, zinc telluride possesses the lowest...
Potassium-ion batteries hold practical potential for large-scale energy storage owing to their appea...
The strategic design of the cathode is a critical feature for high-performance and long-lasting reve...
N-doped hierarchical porous carbon with uniaxially packed carbon nanotubes (CNTs) was prepared by co...
Transition metal selenides with high theoretical capacities possess attractive potential as anode ma...
Branched Sn78Ge22@carbon core-shell nanowires were prepared by thermal annealing of butyl-capped Sn7...
Conversion-type anodes with high theoretical capacity have attracted enormous interest for lithium s...
Well-aligned Zn3P2 nanowires-assembly bundles/Ti foil integrated anodes were for the first time succ...
Developing low-cost, high-capacity, high-rate, and robust earth-abundant electrode materials for ene...
For large-scale energy storage devices, lithium-ion batteries (LIBs) are leading candidates for appl...
ZnTe amorphous semiconductor nanowires array was electrodeposited into the nanochannels of ion-track...
Nowadays, the decreasing availability of fossil fuels has made the demand for efficient storage and ...
The sluggish diffusion kinetics of divalent Zn2+ in cathode and the limited availability of active m...
Highlights: - Unique “Janus” interfacial assemble strategy of 2D MXene nanosheets was proposed firs...
Na-ion batteries and K-ion batteries are promising alternatives to vastly used lithium-ion batteries...