International audienceTin and tin oxide materials have been considered as the promising new materials to replace the current graphite anode of lithium ion battery because of their exceptionally high theoretical capacity at least 3 times higher than those of graphite, low cost and environmental benignity. However, tin-based anode performances and durability are still under debate and linked on the texture, structure and morphology of those materials. In this work, we provide systematic and reproducible results to compare electrochemical performances of tin-based anode materials. Nanostructured Sn, SnO and SnO 2 have been investigated in half-cells. Capacities, fading upon cycling, energy density and power density have been studied and relate...
Tin (II) oxide has been proposed as potential anode material in lithium rechargeable batteries. Diff...
The heart of battery technology lies primarily in the electrode material, which is fundamental to ho...
AbstractThe conversion-alloying compounds have been identified as promising anode materials for sodi...
International audienceTin and tin oxide materials have been considered as the promising new material...
International audienceElectrochemical and physicochemical characteristics of three tin-based materia...
Tin-based materials, especially tin oxide, have been widely investigated as potential graphite subst...
Rechargeable lithium-ion batteries (LIBs), which are the most important electrochemical energy stora...
Tin is an attractive alternative to replace traditional carbon based anodes in lithium-ion batteries...
Three new possible Li-ion battery negative electrode materials, ZnO, ZnO:SnO2 ball-milled mixture an...
The development of new electrode materials for lithium-ion batteries (LIBs) has always been a focal ...
As a potential anode material, tin (Sn) has attracted great attention due to its low cost and its hi...
Tin oxide (SnO2) is considered a very promising material as a high capacity Li-ion battery anode. It...
Anodes derived from oxides of tin have, of late, been of considerable interest because, in principle...
Tin oxide (SnO2) is considered a very promising material as a high capacity Li-ion battery anode. It...
The demand of improvement in lithium-ion battery technology in terms of specific capacity and safety...
Tin (II) oxide has been proposed as potential anode material in lithium rechargeable batteries. Diff...
The heart of battery technology lies primarily in the electrode material, which is fundamental to ho...
AbstractThe conversion-alloying compounds have been identified as promising anode materials for sodi...
International audienceTin and tin oxide materials have been considered as the promising new material...
International audienceElectrochemical and physicochemical characteristics of three tin-based materia...
Tin-based materials, especially tin oxide, have been widely investigated as potential graphite subst...
Rechargeable lithium-ion batteries (LIBs), which are the most important electrochemical energy stora...
Tin is an attractive alternative to replace traditional carbon based anodes in lithium-ion batteries...
Three new possible Li-ion battery negative electrode materials, ZnO, ZnO:SnO2 ball-milled mixture an...
The development of new electrode materials for lithium-ion batteries (LIBs) has always been a focal ...
As a potential anode material, tin (Sn) has attracted great attention due to its low cost and its hi...
Tin oxide (SnO2) is considered a very promising material as a high capacity Li-ion battery anode. It...
Anodes derived from oxides of tin have, of late, been of considerable interest because, in principle...
Tin oxide (SnO2) is considered a very promising material as a high capacity Li-ion battery anode. It...
The demand of improvement in lithium-ion battery technology in terms of specific capacity and safety...
Tin (II) oxide has been proposed as potential anode material in lithium rechargeable batteries. Diff...
The heart of battery technology lies primarily in the electrode material, which is fundamental to ho...
AbstractThe conversion-alloying compounds have been identified as promising anode materials for sodi...