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用于高速锂金属电池的超薄、机械耐用且可扩展的盐包聚合物固体电解质。

Ultrathin, Mechanically Durable, and Scalable Polymer-in-Salt Solid Electrolyte for High-Rate Lithium Metal Batteries.

作者信息

Pan Long, Feng Shengfa, Sun Hui, Liu Xiong Xiong, Yuan Pengcheng, Cao Mufan, Gao Min, Wang Yaping, Sun ZhengMing

机构信息

Key Laboratory of Advanced Metallic Materials of Jiangsu Province, School of Materials Science and Engineering, Southeast University, Nanjing, 211189, P. R. China.

出版信息

Small. 2024 Aug;20(34):e2400272. doi: 10.1002/smll.202400272. Epub 2024 Apr 16.

Abstract

Polymer-in-salt solid-state electrolytes (PIS SSEs) are emerging for high room-temperature ionic conductivity and facile handling, but suffer from poor mechanical durability and large thickness. Here, AlO-coated PE (PE/AO) separators are proposed as robust and large-scale substrates to trim the thickness of PIS SSEs without compromising mechanical durability. Various characterizations unravel that introducing AlO coating on PE separators efficiently improves the wettability, thermal stability, and Li-dendrite resistance of PIS SSEs. The resulting PE/AO@PIS demonstrates ultra-small thickness (25 µm), exceptional mechanical durability (55.1 MPa), high decomposition temperature (330 °C), and favorable ionic conductivity (0.12 mS cm at 25 °C). Consequently, the symmetrical Li cells remain stable at 0.1 mA cm for 3000 h, without Li dendrite formation. Besides, the LiFePO|Li full cells showcase excellent rate capability (131.0 mAh g at 10C) and cyclability (93.6% capacity retention at 2C after 400 cycles), and high-mass-loading performance (7.5 mg cm). Moreover, the PE/AO@PIS can also pair with nickel-rich layered oxides (NCM811 and NCM9055), showing a remarkable specific capacity of 165.3 and 175.4 mAh g at 0.2C after 100 cycles, respectively. This work presents an effective large-scale preparation approach for mechanically durable and ultrathin PIS SSEs, driving their practical applications for next-generation solid-state Li-metal batteries.

摘要

盐包聚合物固态电解质(PIS SSEs)因其高室温离子电导率和易于处理而崭露头角,但存在机械耐久性差和厚度大的问题。在此,提出了AlO包覆的PE(PE/AO)隔膜作为坚固且大规模的基底,以在不损害机械耐久性的情况下减小PIS SSEs的厚度。各种表征表明,在PE隔膜上引入AlO涂层可有效提高PIS SSEs的润湿性、热稳定性和抗锂枝晶性能。所得的PE/AO@PIS表现出超小厚度(25 µm)、出色的机械耐久性(55.1 MPa)、高分解温度(330 °C)和良好的离子电导率(25 °C时为0.12 mS cm)。因此,对称锂电池在0.1 mA cm下可稳定3000 h,无锂枝晶形成。此外,LiFePO|Li全电池展现出优异的倍率性能(10C时为131.0 mAh g)和循环稳定性(400次循环后2C时容量保持率为93.6%)以及高质量负载性能(7.5 mg cm)。此外,PE/AO@PIS还可与富镍层状氧化物(NCM811和NCM9055)配对,分别在100次循环后0.2C时显示出165.3和175.4 mAh g的显著比容量。这项工作提出了一种有效的大规模制备方法,用于制备机械耐用且超薄的PIS SSEs,推动其在下一代固态锂金属电池中的实际应用。

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