Tin-based nanocomposite materials embedded in carbon frameworks can be used as effective negative electrode materials for lithium-ion batteries (LIBs), owing to their high theoretical capacities with stable cycle performance. In this work, a low-cost and productive facile hydrothermal method was employed for the preparation of a Sn/C nanocomposite, in which Sn particles (sized in nanometers) were uniformly dispersed in the conductive carbon matrix. The as-prepared Sn/C nanocomposite displayed a considerable reversible capacity of 877 mAhg−1 at 0.1 Ag−1 with a high first cycle charge/discharge coulombic efficiency of about 77%, and showed 668 mAh/g even at a relatively high current density of 0.5 Ag−1 after 100 cycles. Furthermore, excellent...
In this Letter, we reported on the preparation and Li-ion battery anode application of ultrasmall Sn...
C/Sn nanocomposites were prepared in simultaneous pyrolysis and carboreduction process (700 and 800°...
It is a formidable challenge to arrange tin nanoparticles in a porous matrix for the achievement of ...
A refined, nanostructured Sn-C composite with unique chemical stability is prepared and characterize...
The electrochemical behavior of a composite anode for Li-ion batteries, based on nanosize tin partic...
A novel anode material for lithium-ion batteries, tin nanoparticles coated with carbon embedded in g...
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...
In this work we disclose an electrode based on a formulation which differs from all those previously...
We report a simple method of preparing a high performance, Sn-based anode material for lithium ion b...
A dew mesoporous carbon-tin(MC-Sn) nanocomposite has been successfully prepared via a two-step metho...
A tin-carbon composite synthesized by high energy mechanical milling (HEMM) technique is characteriz...
A tin-carbon composite synthesized by high energy mechanical milling (HEMM) technique is characteriz...
International audienceHerein, we report a systematic study on the understanding of the influence of ...
Anode material for lithium-ion battery based on Sn/carbon nanotube (CNT) composite is synthesized vi...
In this Letter, we reported on the preparation and Li-ion battery anode application of ultrasmall Sn...
C/Sn nanocomposites were prepared in simultaneous pyrolysis and carboreduction process (700 and 800°...
It is a formidable challenge to arrange tin nanoparticles in a porous matrix for the achievement of ...
A refined, nanostructured Sn-C composite with unique chemical stability is prepared and characterize...
The electrochemical behavior of a composite anode for Li-ion batteries, based on nanosize tin partic...
A novel anode material for lithium-ion batteries, tin nanoparticles coated with carbon embedded in g...
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...
In this work we disclose an electrode based on a formulation which differs from all those previously...
We report a simple method of preparing a high performance, Sn-based anode material for lithium ion b...
A dew mesoporous carbon-tin(MC-Sn) nanocomposite has been successfully prepared via a two-step metho...
A tin-carbon composite synthesized by high energy mechanical milling (HEMM) technique is characteriz...
A tin-carbon composite synthesized by high energy mechanical milling (HEMM) technique is characteriz...
International audienceHerein, we report a systematic study on the understanding of the influence of ...
Anode material for lithium-ion battery based on Sn/carbon nanotube (CNT) composite is synthesized vi...
In this Letter, we reported on the preparation and Li-ion battery anode application of ultrasmall Sn...
C/Sn nanocomposites were prepared in simultaneous pyrolysis and carboreduction process (700 and 800°...
It is a formidable challenge to arrange tin nanoparticles in a porous matrix for the achievement of ...