Tin is an attractive alternative to replace traditional carbon based anodes in lithium-ion batteries (LIBs) due to the nearly three-fold increase in theoretical capacity over carbon. However, metallic tin su↵ers from volumetric expansion of the crystal structure during initial lithium insertion that quickly degrades the material and reduces the performance of the battery. Various techniques have been previously investigated with the goal of suppressing this destructive expansion by incorporating oxygen or a lithium-inactive metal into the tin to provide structural support and mitigate volumetric expansion. These materials show increased capacity retention compared to metallic tin, but still su↵er from capacity fading. The nature of these st...
Anodes of SnO were charged reversibly with Li to capacities greater than 600 mAh/g, The anode materi...
International audienceThe electrochemical cycling mechanism of the ternary intermetallic TiSnSb, a p...
The demand of improvement in lithium-ion battery technology in terms of specific capacity and safety...
In situ X-ray absorption spectroscopy (XAS) of an electrode material under electrochemical control h...
International audienceTin and tin oxide materials have been considered as the promising new material...
The practical applications of lithium ion batteries are highly dependent on the choice of electrodes...
Rechargeable lithium-ion batteries (LIBs), which are the most important electrochemical energy stora...
High capacity lithium ion (Li+) host materials, such as silicon (Si) and tin (Sn), serve as potentia...
We report our electrochemical and in situ x-ray diffraction experiments on a variety of tin oxide ba...
The conversion reaction of lithia can push up the capacity limit of tin oxide-based anodes. However,...
Tin oxide-based materials, operating via irreversible conversion and reversible alloying reaction, a...
International audienceElectrochemical and physicochemical characteristics of three tin-based materia...
Among electrical energy storage devices (EES), lithium-ion batteries (LIBs) are considered to have t...
The electrochemical cycling mechanism of the ternary intermetallic TiSnSb, a promising conversion-ty...
Lithium-ion batteries are essential energy storage devices for modern-day technology and for creatin...
Anodes of SnO were charged reversibly with Li to capacities greater than 600 mAh/g, The anode materi...
International audienceThe electrochemical cycling mechanism of the ternary intermetallic TiSnSb, a p...
The demand of improvement in lithium-ion battery technology in terms of specific capacity and safety...
In situ X-ray absorption spectroscopy (XAS) of an electrode material under electrochemical control h...
International audienceTin and tin oxide materials have been considered as the promising new material...
The practical applications of lithium ion batteries are highly dependent on the choice of electrodes...
Rechargeable lithium-ion batteries (LIBs), which are the most important electrochemical energy stora...
High capacity lithium ion (Li+) host materials, such as silicon (Si) and tin (Sn), serve as potentia...
We report our electrochemical and in situ x-ray diffraction experiments on a variety of tin oxide ba...
The conversion reaction of lithia can push up the capacity limit of tin oxide-based anodes. However,...
Tin oxide-based materials, operating via irreversible conversion and reversible alloying reaction, a...
International audienceElectrochemical and physicochemical characteristics of three tin-based materia...
Among electrical energy storage devices (EES), lithium-ion batteries (LIBs) are considered to have t...
The electrochemical cycling mechanism of the ternary intermetallic TiSnSb, a promising conversion-ty...
Lithium-ion batteries are essential energy storage devices for modern-day technology and for creatin...
Anodes of SnO were charged reversibly with Li to capacities greater than 600 mAh/g, The anode materi...
International audienceThe electrochemical cycling mechanism of the ternary intermetallic TiSnSb, a p...
The demand of improvement in lithium-ion battery technology in terms of specific capacity and safety...