Abstract:To date, lithium lanthanum titanate (LLTO) of the nominal formula Li3xLa2/3-x
1/3-2xTiO3 with perovskite structure have been considered to be promising solid electrolyte materials for lithium-oxygen battery due to a numerous outstanding advantages such as: (i) a high lithium conductivity at room temperature, (ii) a high lithium diffusion coefficient, (iii) a low electronic conductivity, and (iv) an electrochemical window larger than 4 V. However, the LLTO materials have also suffered from a … Show more
An ab initio molecular dynamics study of an electrochemical interface between a solid-state-electrolyte Li0.29La0.57TiO3 and Li-metal to analyze interphase formation and evolution when external electric fields are applied.
An ab initio molecular dynamics study of an electrochemical interface between a solid-state-electrolyte Li0.29La0.57TiO3 and Li-metal to analyze interphase formation and evolution when external electric fields are applied.
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