We explore a hybrid material consisting of SnO nanoparticles (NPs) embedded in the porous shells of carbon cages (SnO-PSCC). The hybrid material exhibits improved kinetics of lithiation-delithiation and high reversible capacity, and excellent cyclic stability without capacity loss over 100 cycles at 500 mA g with a coulombic efficiency close to 100% after the initial cycle. This can be ascribed to the high electrical conductivity, the hierarchical porosity and the confinement effect of the PSCC on the volume change of SnO NPs. The material has a large reversible capacity of 460 mA h g at a high current density of 5 A g due to a short ion diffusion length in the bulk and large number of inter-pore ion transport channels. These results provid...
SnO2 is regarded as one of the most promising anodes via conversion-alloying mechanism for advanced ...
An efficient anode with a superior high-rate capability and stability remains a challenge for develo...
Tin oxide (SnO2) has been considered as one of the most promising anodes for advanced rechargeable b...
We report a simple synthetic method of carbon-based hybrid cellular nanosheets that exhibit outstand...
We report a simple synthetic method of carbon-based hybrid cellular nanosheets that exhibit outstand...
To overcome the low conductivity and large volume variation of metal oxide anodes, the electrode mic...
To overcome the low conductivity and large volume variation of metal oxide anodes, the electrode mic...
he conventional approach for fabricating all-solid-state batteries has required a highly dense layer...
We report a simple synthetic method of carbon-based hybrid cellular nanosheets that exhibit outstand...
Abstract The two major limitations in the application of SnO2 for lithium-ion battery (LIB) anodes a...
A novel way for the synthesis of core/shell structures composed of tin oxide nanoparticles confined ...
We employed a glucose mediated hydrothermal self-assembly method to create a SnO2-carbon nanocomposi...
We report a simple glucose-mediated hydrothermal method for gram-scale synthesis of nearly monodispe...
The coupling between electrochemically active material and conductive matrix is vitally important fo...
We demonstrate a facile route for the scalable synthesis of SnO2 nanoparticles with controlled carbo...
SnO2 is regarded as one of the most promising anodes via conversion-alloying mechanism for advanced ...
An efficient anode with a superior high-rate capability and stability remains a challenge for develo...
Tin oxide (SnO2) has been considered as one of the most promising anodes for advanced rechargeable b...
We report a simple synthetic method of carbon-based hybrid cellular nanosheets that exhibit outstand...
We report a simple synthetic method of carbon-based hybrid cellular nanosheets that exhibit outstand...
To overcome the low conductivity and large volume variation of metal oxide anodes, the electrode mic...
To overcome the low conductivity and large volume variation of metal oxide anodes, the electrode mic...
he conventional approach for fabricating all-solid-state batteries has required a highly dense layer...
We report a simple synthetic method of carbon-based hybrid cellular nanosheets that exhibit outstand...
Abstract The two major limitations in the application of SnO2 for lithium-ion battery (LIB) anodes a...
A novel way for the synthesis of core/shell structures composed of tin oxide nanoparticles confined ...
We employed a glucose mediated hydrothermal self-assembly method to create a SnO2-carbon nanocomposi...
We report a simple glucose-mediated hydrothermal method for gram-scale synthesis of nearly monodispe...
The coupling between electrochemically active material and conductive matrix is vitally important fo...
We demonstrate a facile route for the scalable synthesis of SnO2 nanoparticles with controlled carbo...
SnO2 is regarded as one of the most promising anodes via conversion-alloying mechanism for advanced ...
An efficient anode with a superior high-rate capability and stability remains a challenge for develo...
Tin oxide (SnO2) has been considered as one of the most promising anodes for advanced rechargeable b...