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Jiayao Lu, Ying Li, Xiaocong Zhu, Jinzhou Li, Kui Li, Shoujiang Guan, Yushi Ding, and Wenlong Huang, Electrochemical properties of sandwich-structured solid electrolyte for an all-solid-state Li battery, Int. J. Miner. Metall. Mater., (2025). https://doi.org/10.1007/s12613-025-3253-0
Jiayao Lu, Ying Li, Xiaocong Zhu, Jinzhou Li, Kui Li, Shoujiang Guan, Yushi Ding, and Wenlong Huang, Electrochemical properties of sandwich-structured solid electrolyte for an all-solid-state Li battery, Int. J. Miner. Metall. Mater., (2025). https://doi.org/10.1007/s12613-025-3253-0
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全固态锂电池的三明治结构固体电解质电化学性能研究

摘要: 全固态锂电池(All solid-state lithium batteries)被认为是下一代储能电池,其具有高安全性能和高能量密度,能满足电动汽车不断增长的续航里程以及安全方面的需求。然而,固体电解质对金属锂稳定性较差和固固界面阻抗大等问题,限制了全固态锂电池的发展。为了提高全固态锂电池的固-固界面性能,本文研究了一种新型的三明治结构的固体电解质(总厚度为0.7毫米),由Li0.37Sr0.44Zr0.25Ta0.75O3钙钛矿型电解质(厚度为0.5毫米)和两层的复合固体聚合物电解质(厚度为0.1毫米)组成。薄的复合固体聚合物电解质不仅有效地降低了固体电解质和电极之间的界面阻抗,还能保证界面电流密度的分布均匀。在30°C时,三明治结构固体电解质的离子电导率为8.76×10−5 S·cm−1,100°C时的离子电导率为1.13 × 10−3 S·cm−1,活化能仅为0.36 eV。此外,三明治结构固体电解质对锂金属稳定,电化学稳定窗口高达4.58 V vs. Li+/Li。三明治结构固体电解质具有优异的电极/电解质界面相容性,并显著抑制了锂枝晶的生长。锂对称电池在0.3 mA·cm−2的电流密度下能稳定运行500小时以上,全固态LiFePO4 | Li电池在0.1C的充放电速率下,初始放电比容量为109.8 mAh·g−1,循环50次后放电比容量为118.1 mAh·g−1,表现出良好的电池循环性能。

 

Electrochemical properties of sandwich-structured solid electrolyte for an all-solid-state Li battery

Abstract: To improve the solid–solid interface performance of all solid-state lithium batteries (ASSLBs), a novel sandwich-structured solid electrolyte (SSE, total thickness of 0.7 mm) comprising Li0.37Sr0.44Zr0.25Ta0.75O3 (LSZT, thickness of 0.5 mm) perovskite-type electrolyte and a composite solid polymer electrolyte (CSPE, thickness of 0.1 mm) was investigated. The thin CSPE interlayer not only effectively reduces interfacial resistance between LSZT and electrodes, but also suppresses Li-induced reduction degradation of LSZT while ensuring uniform current density distribution across the interface. The SSE demonstrates an ionic conductivity of 8.76 × 10−5 S·cm−1 at 30°C, increasing to 1.13 × 10−3 S·cm−1 at 100°C, with an activation energy of 0.36 eV. In addition, SSE is stable for Li metal and achieves electrochemical stability up to 4.58 V vs. Li+/Li. SSE shows outstanding electrode/electrolyte interfacial compatibility, and significant suppression of the growth of Li dendrite. Ascribing to these merits, Li | SSE | Li symmetric cell maintained stable operation for 500 h at a current density of 0.3 mA·cm−2 without short circuit, confirming robust interfacial compatibility between SSE and Li electrode. The all-solid-state LiFePO4 | Li battery with SSE has an initial reversible discharge capacity of 109.8 mAh·g−1, and a reversible capacity of 118.1 mAh·g−1 after 50 cycles at a charge/discharge rate of 0.1C (30°C), demonstrating good cycling performance.

 

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