International audienceAll-solid-state thin film batteries based on sputtered pyrite electrodes, a lithium phosphorus oxynitride electrolyte and a lithium anode were prepared and characterized. The successive reduction of both S22 − and Fe2 + species led to an impressive volumetric discharge capacity, five times higher than the one for LiCoO2. Excellent reversibility and capacity retention were obtained during the first and the subsequent 800 charge–discharge cycles. A continuous cycling in the low voltage domain was found to be detrimental to the reversibility of the conversion reaction, suggesting a progressive evolution of the phase distribution inside the electrode. The initial capacity was easily recovered after few full oxidation cycle...
Pyrite (FeS2) stands out from other metal sulfides due to its abundance, low toxicity and high speci...
The factors that limit the performance of thermally activated Li-Si/FeS2 batteries were defined thro...
All-solid-state lithium sulfide batteries exhibit great potential as next-generation energy storage ...
International audienceAll-solid-state thin film batteries based on sputtered pyrite electrodes, a li...
Pyrite FeS2 has been successfully applied in primary Li/FeS2 batteries, but its poor cyclability in ...
Although lithium-sulfur batteries are expected to be the next-generation high-capacity battery of ch...
Iron pyrite (FeS2) is an inexpensive and abundant material that has minimal environmental toxicity a...
The charge andn ischarge. 57 mechanisms., of Li/FeS2 and Li/L12FeS2 ' cells near room temperatu...
In bulk-type all-solid-state lithium batteries with sulfide-based solid electrolytes, composite elec...
Nanoscale FeS2 was synthesized via a simple hydrothermal method and was decorated by hydrothermal ca...
Iron (II) fluoride and cobalt (II) oxide are candidate electrode materials for a new class of recha...
A dual redox process involving Ti3+/Ti4+ cation species and S2-/(S2)2- anion species is highlighted ...
Published: 23 March 2016Nanoscale FeS2 was synthesized via a simple hydrothermal method and was deco...
Conversion material electrodes such as FeF2 possess the potential to deliver transformative improvem...
Given the inherent performance limitations of intercalation-based lithium-ion batteries, solid-state...
Pyrite (FeS2) stands out from other metal sulfides due to its abundance, low toxicity and high speci...
The factors that limit the performance of thermally activated Li-Si/FeS2 batteries were defined thro...
All-solid-state lithium sulfide batteries exhibit great potential as next-generation energy storage ...
International audienceAll-solid-state thin film batteries based on sputtered pyrite electrodes, a li...
Pyrite FeS2 has been successfully applied in primary Li/FeS2 batteries, but its poor cyclability in ...
Although lithium-sulfur batteries are expected to be the next-generation high-capacity battery of ch...
Iron pyrite (FeS2) is an inexpensive and abundant material that has minimal environmental toxicity a...
The charge andn ischarge. 57 mechanisms., of Li/FeS2 and Li/L12FeS2 ' cells near room temperatu...
In bulk-type all-solid-state lithium batteries with sulfide-based solid electrolytes, composite elec...
Nanoscale FeS2 was synthesized via a simple hydrothermal method and was decorated by hydrothermal ca...
Iron (II) fluoride and cobalt (II) oxide are candidate electrode materials for a new class of recha...
A dual redox process involving Ti3+/Ti4+ cation species and S2-/(S2)2- anion species is highlighted ...
Published: 23 March 2016Nanoscale FeS2 was synthesized via a simple hydrothermal method and was deco...
Conversion material electrodes such as FeF2 possess the potential to deliver transformative improvem...
Given the inherent performance limitations of intercalation-based lithium-ion batteries, solid-state...
Pyrite (FeS2) stands out from other metal sulfides due to its abundance, low toxicity and high speci...
The factors that limit the performance of thermally activated Li-Si/FeS2 batteries were defined thro...
All-solid-state lithium sulfide batteries exhibit great potential as next-generation energy storage ...