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首页> 外文期刊>Physical chemistry chemical physics: PCCP >In situ SEM study of a lithium deposition and dissolution mechanism in a bulk-type solid-state cell with a Li2S-P2S5 solid electrolyte
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In situ SEM study of a lithium deposition and dissolution mechanism in a bulk-type solid-state cell with a Li2S-P2S5 solid electrolyte

机译:Li2S-P2S5固体电解质在块状固态电池中锂沉积和溶解机理的原位SEM研究

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摘要

In situ SEM observation of a lithium deposition and dissolution process in an all-solid-state lithium metal battery using a sulfide-based solid electrolyte (SE) was carried out. We revealed visually that the morphology of lithium deposition varies with the operating current densities. At current densities higher than 1 mA cm~(-2), local lithium deposition triggers large cracks, leading to a decrease in the reversibility of lithium deposition and dissolution. On the other hand, at a low current density of 0.01 mA cm~(-2), its homogeneous deposition, which enables the reversible deposition and dissolution, hardly brings about the occurrence of unfavorable cracks. These results suggest that homogeneous lithium deposition on the SE and the suppression of the growth of lithium metal along the grain boundaries inside the SE are keys to achieve the repetitive lithium deposition and dissolution reaction without deterioration of the SE.
机译:使用硫化物基固体电解质(SE)在全固态锂金属电池中进行了锂沉积和溶解过程的原位SEM观察。我们从视觉上揭示了锂沉积的形态随工作电流密度而变化。在电流密度高于1 mA cm〜(-2)时,局部锂沉积会触发大的裂纹,从而导致锂沉积和溶解的可逆性降低。另一方面,在0.01mA cm-(-2)的低电流密度下,其均匀的沉积使得可逆的沉积和溶解几乎不引起不良裂纹的发生。这些结果表明,在SE上均匀的锂沉积和抑制沿着SE内部的晶界的锂金属的生长是实现重复的锂沉积和溶解反应而不破坏SE的关键。

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