Glass–ceramic and glass Li2S–GeSe2–P2S5 electrolytes were prepared by a single step ball milling (SSBM) process. Various compositions of Li4−xGe1−xPxS2(1+x)Se2(1−x) with/without heat treatment (HT) from x = 0.55 to x = 1.00 were systematically investigated. Structural analysis by X-ray diffraction (XRD) showed gradual increase of the lattice constant followed by significant phase change with increasing GeSe2. HT also affected the crystallinity. Incorporation of GeSe2 in Li2S–P2S5 kept high conductivity with a maximum value of 1.4 ?? 10−3 S cm−1 at room temperature for x = 0.95 in Li4−xGe1−xPxS2(1+x)Se2(1−x) without HT. All-solid-state LiCoO2/Li cells using Li2S–Ge...
The fast ionic conducting structure similar to thio-Lithium Super Ionic Conductor (LISICON) phase is...
Glass-ceramic solid electrolytes of (100-x)(78Li(2)S center dot 22P(2)S(5))center dot xLi(2)SO(4) (x...
International audienceAll-solid-state-batteries (ASSBs) are one of the most promising post-lithium-i...
Glass-ceramic Li2S-GeS2-P2S5 electrolytes were prepared by a single step ball milling (SSBM) process...
The amorphous and crystalline 75Li2S·(25-x)P2S5·xP2Se5 solid electrolytes were prepare...
Nonhygroscopic selenide of Ge0.35Ga0.05Se0.60 was introduced into the Li2S-P2S5 system by partially ...
We report that glass–ceramic Li2S–P2S5 electrolytes can be prepared by a single step bal...
Sulfide-based Li2S-P2S5 solid state electrolytes were prepared by a high energy ball milling process...
Li10GeP2S12 is a phosphosulfide solid electrolyte that exhibits exceptionally high Li-ion conductivi...
Li10GeP2S12 is a phosphosulfide solid electrolyte that exhibits exceptionally high Li-ion conductivi...
Solid electrolyte Li10GeP2S12 (LGPS) was successfully synthesized by optimizing the mechanical ball ...
Solid electrolyte Li10GeP2S12 (LGPS) was successfully synthesized by optimizing the mechanical ball ...
Li6PS5Cl (LPSC), a sulfide solid-state electrolyte with an argyrodite structure, is one of the ideal...
In an effort to derive Li-containing chalcogenide through a solution process for potential use in so...
A combination of high ionic conductivity and facile processing suggest that sulfide- based material...
The fast ionic conducting structure similar to thio-Lithium Super Ionic Conductor (LISICON) phase is...
Glass-ceramic solid electrolytes of (100-x)(78Li(2)S center dot 22P(2)S(5))center dot xLi(2)SO(4) (x...
International audienceAll-solid-state-batteries (ASSBs) are one of the most promising post-lithium-i...
Glass-ceramic Li2S-GeS2-P2S5 electrolytes were prepared by a single step ball milling (SSBM) process...
The amorphous and crystalline 75Li2S·(25-x)P2S5·xP2Se5 solid electrolytes were prepare...
Nonhygroscopic selenide of Ge0.35Ga0.05Se0.60 was introduced into the Li2S-P2S5 system by partially ...
We report that glass–ceramic Li2S–P2S5 electrolytes can be prepared by a single step bal...
Sulfide-based Li2S-P2S5 solid state electrolytes were prepared by a high energy ball milling process...
Li10GeP2S12 is a phosphosulfide solid electrolyte that exhibits exceptionally high Li-ion conductivi...
Li10GeP2S12 is a phosphosulfide solid electrolyte that exhibits exceptionally high Li-ion conductivi...
Solid electrolyte Li10GeP2S12 (LGPS) was successfully synthesized by optimizing the mechanical ball ...
Solid electrolyte Li10GeP2S12 (LGPS) was successfully synthesized by optimizing the mechanical ball ...
Li6PS5Cl (LPSC), a sulfide solid-state electrolyte with an argyrodite structure, is one of the ideal...
In an effort to derive Li-containing chalcogenide through a solution process for potential use in so...
A combination of high ionic conductivity and facile processing suggest that sulfide- based material...
The fast ionic conducting structure similar to thio-Lithium Super Ionic Conductor (LISICON) phase is...
Glass-ceramic solid electrolytes of (100-x)(78Li(2)S center dot 22P(2)S(5))center dot xLi(2)SO(4) (x...
International audienceAll-solid-state-batteries (ASSBs) are one of the most promising post-lithium-i...