首页> 外文期刊>Electrochemistry communications >Direct observation of lithium-ion movement around an in-situ-formed- negative-electrode/solid-state-electrolyte interface during initial charge-discharge reaction
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Direct observation of lithium-ion movement around an in-situ-formed- negative-electrode/solid-state-electrolyte interface during initial charge-discharge reaction

机译:在初始充放电反应过程中直接观察锂离子在原位形成的负极/固态电解质界面周围的运动

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摘要

Solid-state lithium batteries (SSBs) are highly likely to replace conventional lithium batteries with flammable liquid electrolytes because of their advantages in safety, lifetime, and energy densities. However, the SSBs exhibit large lithium-ion (Li ~+) transfer resistance at the electrode/solid-electrolyte interfaces. Here we use in-situ electron holography (EH) to visually evaluate the Li ~+ movement around the interface that has low interfacial resistance (100 Ωcm ~2). A prepared SSB sample possesses the negative-electrode grown from the parent solid electrolyte by partial Li ~+ insertion reaction into the electrolyte. EH clearly show how the negative electrode material is formed inside the solid electrolyte during the initial charging process of the SSB. Also, EH produces the presence of smooth potential distribution at the negative-electrode/solid-electrolyte interface. Furthermore, EH reveals a subtle potential-change in the solid electrolyte, showing where the Li ~+ movement is disturbed during the charge-discharge reaction.
机译:固态锂电池(SSB)由于其在安全性,寿命和能量密度方面的优势,极有可能用易燃液体电解质代替传统的锂电池。但是,SSB在电极/固体电解质界面处显示出较大的锂离子(Li〜+)转移电阻。在这里,我们使用原位电子全息术(EH)从视觉上评估界面电阻低(100Ωcm〜2)周围的Li〜+运动。制备的SSB样品具有通过部分Li〜+插入电解质中而从母体固体电解质中生长出来的负极。 EH清楚地显示了在SSB的初始充电过程中,如何在固体电解质内部形成负极材料。同样,EH在负电极/固体电解质界面处产生平滑的电势分布。此外,EH揭示了固体电解质中的细微电势变化,表明在充放电反应过程中Li〜+运动受到干扰。

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