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Room-Temperature Solid-State Lithium-Ion Battery Using a LiBH4-MgO Composite Electrolyte.


ABSTRACT: LiBH4 has been widely studied as a solid-state electrolyte in Li-ion batteries working at 120 °C due to the low ionic conductivity at room temperature. In this work, by mixing with MgO, the Li-ion conductivity of LiBH4 has been improved. The optimum composition of the mixture is 53 v/v % of MgO, showing a Li-ion conductivity of 2.86 × 10-4 S cm-1 at 20 °C. The formation of the composite does not affect the electrochemical stability window, which is similar to that of pure LiBH4 (about 2.2 V vs Li+/Li). The mixture has been incorporated as the electrolyte in a TiS2/Li all-solid-state Li-ion battery. A test at room temperature showed that only five cycles already resulted in cell failure. On the other hand, it was possible to form a stable solid electrolyte interphase by applying several charge/discharge cycles at 60 °C. Afterward, the battery worked at room temperature for up to 30 cycles with a capacity retention of about 80%.

SUBMITTER: Gulino V 

PROVIDER: S-EPMC7903705 | biostudies-literature | 2021 Feb

REPOSITORIES: biostudies-literature

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Room-Temperature Solid-State Lithium-Ion Battery Using a LiBH<sub>4</sub>-MgO Composite Electrolyte.

Gulino Valerio V   Brighi Matteo M   Murgia Fabrizio F   Ngene Peter P   de Jongh Petra P   Černý Radovan R   Baricco Marcello M  

ACS applied energy materials 20210129 2


LiBH<sub>4</sub> has been widely studied as a solid-state electrolyte in Li-ion batteries working at 120 °C due to the low ionic conductivity at room temperature. In this work, by mixing with MgO, the Li-ion conductivity of LiBH<sub>4</sub> has been improved. The optimum composition of the mixture is 53 v/v % of MgO, showing a Li-ion conductivity of 2.86 × 10<sup>-4</sup> S cm<sup>-1</sup> at 20 °C. The formation of the composite does not affect the electrochemical stability window, which is sim  ...[more]

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