首页> 外文期刊>Energy Technology: Generation,Conversion,Storage,Distribution >Transformation of P2S5 into a Solid Electrolyte with Ionic Conductivity at the Positive Composite Electrode of All-Solid-State Lithium-Sulfur Batteries
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Transformation of P2S5 into a Solid Electrolyte with Ionic Conductivity at the Positive Composite Electrode of All-Solid-State Lithium-Sulfur Batteries

机译:在全固态锂硫电池的正复合电极上,P2S5转变为具有离子电导率的固体电解质

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摘要

Battery performance of an all-solid-state lithium-sulfur (Li-S) cell with a P2S5-based positive composite electrode was investigated in the absence of solid electrolyte at the positive composite electrode. In the positive composite electrode, P2S5 without ionic conductivity was transformed into a solid electrolyte with ionic conductivity by incorporating lithium ions into P2S5 during the first charge-discharge cycle. Therefore, the all-solid-state Li-S cell with P2S5-based positive composite electrode behaved as a secondary battery. This positive composite electrode is very low cost because it did not use an expensive solid electrolyte. In addition to using a cost-effective positive composite electrode with a sulfur content of 60 wt%, the all-solid-state Li-S cell exhibited an extremely high capacity of 1042 mAhg~(-1) under 6.4 mAcm~(-2) at 25 °C.
机译:研究了在正极复合电极上不存在固体电解质的情况下,具有基于P2S5正极复合电极的全固态锂硫(Li-S)电池的电池性能。在正极复合电极中,通过在第一个充放电循环中将锂离子引入P2S5中,将不具有离子导电性的P2S5转变为具有离子导电性的固体电解质。因此,具有基于P2S5的正复合电极的全固态Li-S电池可作为二次电池。该正极复合电极的成本非常低,因为它不使用昂贵的固体电解质。除了使用硫含量为60 wt%的具有成本效益的正极复合电极外,全固态Li-S电池在6.4 mAcm〜(-2)的条件下还具有1042 mAhg〜(-1)的极高容量。 )在25°C下。

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