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Stabilization of the cubic, fast-ion conducting phase of Li7La3Sn2O12 garnet by gallium doping.


ABSTRACT: All-solid-state batteries present promising high-energy-density alternatives to conventional Li-ion chemistries, and Li-stuffed garnets based on Li7La3Zr2O12 (LLZO) remain a forerunner for candidate solid-electrolytes. One route to access fast-ion conduction in LLZO phases is to stabilize the cubic LLZO phase by doping on the Li sites with aliovalent ions such as Al3+ or Ga3+. Despite prior attempts, the stabilization of the cubic phase of isostructural Li7La3Sn2O12 (LLSO) by doping on the Li sites has up to now not been realised. Here, we report a novel cubic fast-ion conducting Li7La3Sn2O12-type phase stabilized by doping Ga3+ in place of Li. 0.3 mole of gallium per formula unit of LLSO were needed to fully stabilize the cubic garnet, allowing structural and electrochemical characterizations of the new material. A modified sol-gel synthesis approach is introduced in this study to realise Ga-doping in LLSO, which offers a viable route to preparing new Sn-based candidate solid-electrolytes for all-solid-state battery applications.

SUBMITTER: El-Shinawi H 

PROVIDER: S-EPMC10910459 | biostudies-literature | 2024 Feb

REPOSITORIES: biostudies-literature

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Stabilization of the cubic, fast-ion conducting phase of Li<sub>7</sub>La<sub>3</sub>Sn<sub>2</sub>O<sub>12</sub> garnet by gallium doping.

El-Shinawi Hany H   El-Dafrawy Shady M SM   Tarek Mahmoud M   Molouk Ahmed F S AFS   Cussen Edmund J EJ   Cussen Serena A SA  

RSC advances 20240201 11


All-solid-state batteries present promising high-energy-density alternatives to conventional Li-ion chemistries, and Li-stuffed garnets based on Li<sub>7</sub>La<sub>3</sub>Zr<sub>2</sub>O<sub>12</sub> (LLZO) remain a forerunner for candidate solid-electrolytes. One route to access fast-ion conduction in LLZO phases is to stabilize the cubic LLZO phase by doping on the Li sites with aliovalent ions such as Al<sup>3+</sup> or Ga<sup>3+</sup>. Despite prior attempts, the stabilization of the cubic  ...[more]

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