Sn???based chalcogenide composites (TCC) were synthesized as high???capacity anode materials. SnS formed within TCCs is an active center for Li???intercalation. Electrochemical cycling shows that the Sn–Ge–S matrix suppresses the volume expansion that can arise from alloying between Sn and Li as well as the grain growth associated with the low melting temperature of Sn. Sn–Ge–S complex phases in an amorphous state can contribute to the high capacity of Sn:Ge–S (6:4 m/m), possibly suppressing the agglomeration and pulverization of Sn
SnSb-C and Sn-C composites have been fabricated by thermal annealing of the SnO2-Sb2O3 and SnO2 nano...
textLithium-alloying anode materials have attracted much attention as an alternative to carbon due t...
Tin selenides with layered crystal structures, SnSe and SnSe<sub>2</sub>, were synthesized by a soli...
Although possessing a high specific capacity, the practical implementation of SnO2 nanoparticles as ...
The minimization of the detrimental effects as a result of the drastic volume changes (few hundred t...
Li-ion batteries are very important power sources for portable electronic devices due to their high ...
Rechargeable lithium-ion batteries (LIBs), which are the most important electrochemical energy stora...
[[abstract]]Tin-based compounds/carbonaceous materials composite anodes for Li-ion rechargeable batt...
Tin (Sn) anode suffers from considerable volume deformation, generating vast dilatation-induced stre...
As a potential anode material for lithium-ion batteries (LIBs), metal tin shows a high specific capa...
We report a simple method of preparing a high performance, Sn-based anode material for lithium ion b...
[[abstract]]Recently, combination of ductile carbonaceous materials with the metallic Sn has receive...
Carbon-based anodes are the key limiting factor in increasing the volumetric capacity of lithium-ion...
With the fast-growing demand for green and safe energy sources, rechargeable ion batteries have grad...
To design an easily manufactured, large energy density, highly reversible, and fast rate-capable Li-...
SnSb-C and Sn-C composites have been fabricated by thermal annealing of the SnO2-Sb2O3 and SnO2 nano...
textLithium-alloying anode materials have attracted much attention as an alternative to carbon due t...
Tin selenides with layered crystal structures, SnSe and SnSe<sub>2</sub>, were synthesized by a soli...
Although possessing a high specific capacity, the practical implementation of SnO2 nanoparticles as ...
The minimization of the detrimental effects as a result of the drastic volume changes (few hundred t...
Li-ion batteries are very important power sources for portable electronic devices due to their high ...
Rechargeable lithium-ion batteries (LIBs), which are the most important electrochemical energy stora...
[[abstract]]Tin-based compounds/carbonaceous materials composite anodes for Li-ion rechargeable batt...
Tin (Sn) anode suffers from considerable volume deformation, generating vast dilatation-induced stre...
As a potential anode material for lithium-ion batteries (LIBs), metal tin shows a high specific capa...
We report a simple method of preparing a high performance, Sn-based anode material for lithium ion b...
[[abstract]]Recently, combination of ductile carbonaceous materials with the metallic Sn has receive...
Carbon-based anodes are the key limiting factor in increasing the volumetric capacity of lithium-ion...
With the fast-growing demand for green and safe energy sources, rechargeable ion batteries have grad...
To design an easily manufactured, large energy density, highly reversible, and fast rate-capable Li-...
SnSb-C and Sn-C composites have been fabricated by thermal annealing of the SnO2-Sb2O3 and SnO2 nano...
textLithium-alloying anode materials have attracted much attention as an alternative to carbon due t...
Tin selenides with layered crystal structures, SnSe and SnSe<sub>2</sub>, were synthesized by a soli...