High‐charge‐capacity sodium‐ and lithium‐ion battery anodes based on tin telluride are reported for the first time. Graphene oxide/cubic β‐SnTe electrodes exhibit exceptionally high reversible volumetric charge capacities above 3000 and 1300 mAh cm−3 at 100 mA g−1 charging rate for lithium and sodium ion batteries, respectively, and they show very good rate capabilities retaining 68 and 60 % of the respective capacities even at 2000 mA g−1 charging rate. The reversible charge capacity for lithiation is approximately equal to the theoretical value of the active material. The superior electrode performance is attributed to the high conductivity of tellurium, the mechanical buffering of volume changes by the large row‐V host elements, the elas...
In this study, ultrasound assisted solution based chemical synthesis method has been developed to sy...
A layered SnS2-reduced graphene oxide (SnS2-RGO) composite is prepared by a facile hydrothermal rout...
A nanocomposite material made of layered tin disulfide (SnS2) nanoplates vertically grown on reduced...
High-charge-capacity sodium-ion battery anodes made of Sb2Te3@reduced graphene oxide are reported fo...
Tin-oxide and graphene (TG) composites were fabricated using the Electrostatic Spray Deposition (ESD...
A composite made from graphene nanoribbons (GNRs) and tin oxide (SnO<sub>2</sub>) nanoparticles (NPs...
A new type of hierarchical tin@carbon composite composed of graphene carbonaceous matrix and well-co...
We develop a novel approach to prepare tin oxide (SnO2)/graphene composite as an anode material for ...
The massive combustion of fossil fuels and associated environmental problems have placed the signifi...
A tin-decorated reduced graphene oxide, originally developed for lithium-ion batteries, has been inv...
Although nanotechnology has ushered in many new materials storing a high density of electrochemical ...
The electrochemical behavior of a composite anode based on tin oxide nanoparticles embedded in elec-...
Limited by the size of microelectronics, as well as the space of electrical vehicles, there are trem...
A tin-decorated reduced graphene oxide, originally developed for lithium-ion batteries, has been inv...
Reduced graphene oxide/tin oxide composite is prepared by homogenous coprecipitation. Characterizati...
In this study, ultrasound assisted solution based chemical synthesis method has been developed to sy...
A layered SnS2-reduced graphene oxide (SnS2-RGO) composite is prepared by a facile hydrothermal rout...
A nanocomposite material made of layered tin disulfide (SnS2) nanoplates vertically grown on reduced...
High-charge-capacity sodium-ion battery anodes made of Sb2Te3@reduced graphene oxide are reported fo...
Tin-oxide and graphene (TG) composites were fabricated using the Electrostatic Spray Deposition (ESD...
A composite made from graphene nanoribbons (GNRs) and tin oxide (SnO<sub>2</sub>) nanoparticles (NPs...
A new type of hierarchical tin@carbon composite composed of graphene carbonaceous matrix and well-co...
We develop a novel approach to prepare tin oxide (SnO2)/graphene composite as an anode material for ...
The massive combustion of fossil fuels and associated environmental problems have placed the signifi...
A tin-decorated reduced graphene oxide, originally developed for lithium-ion batteries, has been inv...
Although nanotechnology has ushered in many new materials storing a high density of electrochemical ...
The electrochemical behavior of a composite anode based on tin oxide nanoparticles embedded in elec-...
Limited by the size of microelectronics, as well as the space of electrical vehicles, there are trem...
A tin-decorated reduced graphene oxide, originally developed for lithium-ion batteries, has been inv...
Reduced graphene oxide/tin oxide composite is prepared by homogenous coprecipitation. Characterizati...
In this study, ultrasound assisted solution based chemical synthesis method has been developed to sy...
A layered SnS2-reduced graphene oxide (SnS2-RGO) composite is prepared by a facile hydrothermal rout...
A nanocomposite material made of layered tin disulfide (SnS2) nanoplates vertically grown on reduced...