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Stable LATP/LAGP double-layer solid electrolyte prepared via a simple dry-pressing method for solid state lithium ion batteries

机译:通过简单的干压法为固态锂离子电池制备稳定的LatP / LAGP双层固体电解质

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In this paper, a NASICON-type Li _(1.3) Al _(0.3) Ti _(1.7) (PO _(4) ) _(3) (LATP)/Li _(1.3) Al _(0.3) Ge _(1.7) (PO _(4) ) _(3) (LAGP) bi-layer structured solid state electrolyte was successfully prepared via a simple dry pressing and post-calcination method. By adjusting the sintering temperature for LAGP starting materials, a dense and smooth LATP/LAGP double-layer solid state electrolyte with no defects was obtained. This electrolyte sample exhibits a high electrical conductivity of 3.4 × 10 ~(?4) S cm ~(?1) and a negligible electronic conductivity of 9.6 × 10 ~(?9) S cm ~(?1) at room temperature. In addition, the LATP/LAGP electrolyte also shows an excellent stability in air as well as chemical stability against Li. Moreover, an assembled LiFePO _(4) /LATP–LAGP/Li coin-type battery employing LATP/LAGP as the solid state electrolyte can be suitably charged and discharged at a current rate of 0.1C at room temperature, and its low charge–discharge capacities are mainly attributed to the high electrolyte/electrode interfacial resistance of the cell. These results suggest that the LATP/LAGP bi-layer electrolyte can be an alternative electrolyte for all-solid-state lithium-ion batteries.
机译:在本文中,NASICON型LI _(1.3)AL _(0.3)TI _(1.7)(PO _(4))_(3)(LATP)/ LI _(1.3)AL _(0.3)GE _ (1.7)(PO _(4))_(3)(LAGP)双层结构固态电解质通过简单的干压和煅烧方法成功制备。通过调节LAGP原料的烧结温度,获得没有缺陷的致密和平滑的LATP / LAGP双层固态电解质。该电解质样品在室温下表现出3.4×10〜(α4)Cm〜(α1)的高电导率为3.4×10〜(Δ4),并且可以在室温下为9.6×10〜(Δ9)Cm〜(α1)的可忽略不计的电子电导率。此外,LATP / LAGP电解质还显示出在空气中具有出色的稳定性以及对Li的化学稳定性。此外,作为固态电解质的使用LATP / LAGP的组装的LiFepo _(4)/ Latp-LAGP / Li币型电池可以在室温下以0.1℃的电流速率适当地充电和放电,并且其低电荷 - 放电容量主要归因于细胞的高电解质/电极界面抗性。这些结果表明LATP / LAGP双层电解质可以是全固态锂离子电池的替代电解质。

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