Nanosize tin particles (Sn-PMCMT) embedded in electrically conducting porous multichannel carbon microtubes are synthesized by co-electrospinning followed by air stabilization and carbonization in Ar/H2 atmosphere. Scanning and transmission electron microscopy show that the material is nanostructured with nanosize Sn particles well embedded into the carbon host matrix. Composite electrodes prepared using Sn-PMCMT, Super-P carbon and Na-carboxymethylcellulose as binder, exhibit a superior rate capability and exceptional cycle life in cell tests at room temperature. Discharge capacities as high as 632 mAh/g at 0.7 C rate are obtained during the first galvanostatic cycles. The delivered capacities are still in excess of 350 mAh/g after 600 cyc...
A novel anode material for lithium-ion batteries, tin nanoparticles coated with carbon embedded in g...
The demand of improvement in lithium-ion battery technology in terms of specific capacity and safety...
We report a simple method of preparing a high performance, Sn-based anode material for lithium ion b...
Nanosize tin particles (Sn-PMCMT) embedded in electrically conducting porous multichannel carbon mic...
Nanosize tin particles (Sn-PMCMT) embedded in electrically conducting porous multichannel carbon mic...
Nanosize tin particles (Sn-PMCMT) embedded in electrically conducting porous multichannel carbon mic...
Nanosize tin particles (Sn-PMCMT) embedded in electrically conducting porous multichannel carbon mic...
Nanosize tin particles (Sn-PMCMT) embedded in electrically conducting porous multichannel carbon mic...
International audienceHerein, we report a systematic study on the understanding of the influence of ...
The electrochemical behavior of a composite anode for Li-ion batteries, based on nanosize tin partic...
The electrochemical behavior of a composite anode for Li-ion batteries, based on nanosize tin partic...
The electrochemical behavior of a composite anode for Li-ion batteries, based on nanosize tin partic...
Carbon-based anodes are the key limiting factor in increasing the volumetric capacity of lithium-ion...
One of the crucial challenges for applying Sn as an anode of lithium-ion batteries (LIBs) is the dra...
In this Letter, we reported on the preparation and Li-ion battery anode application of ultrasmall Sn...
A novel anode material for lithium-ion batteries, tin nanoparticles coated with carbon embedded in g...
The demand of improvement in lithium-ion battery technology in terms of specific capacity and safety...
We report a simple method of preparing a high performance, Sn-based anode material for lithium ion b...
Nanosize tin particles (Sn-PMCMT) embedded in electrically conducting porous multichannel carbon mic...
Nanosize tin particles (Sn-PMCMT) embedded in electrically conducting porous multichannel carbon mic...
Nanosize tin particles (Sn-PMCMT) embedded in electrically conducting porous multichannel carbon mic...
Nanosize tin particles (Sn-PMCMT) embedded in electrically conducting porous multichannel carbon mic...
Nanosize tin particles (Sn-PMCMT) embedded in electrically conducting porous multichannel carbon mic...
International audienceHerein, we report a systematic study on the understanding of the influence of ...
The electrochemical behavior of a composite anode for Li-ion batteries, based on nanosize tin partic...
The electrochemical behavior of a composite anode for Li-ion batteries, based on nanosize tin partic...
The electrochemical behavior of a composite anode for Li-ion batteries, based on nanosize tin partic...
Carbon-based anodes are the key limiting factor in increasing the volumetric capacity of lithium-ion...
One of the crucial challenges for applying Sn as an anode of lithium-ion batteries (LIBs) is the dra...
In this Letter, we reported on the preparation and Li-ion battery anode application of ultrasmall Sn...
A novel anode material for lithium-ion batteries, tin nanoparticles coated with carbon embedded in g...
The demand of improvement in lithium-ion battery technology in terms of specific capacity and safety...
We report a simple method of preparing a high performance, Sn-based anode material for lithium ion b...