Cui Yi, Wan Jiayu, Ye Yusheng, Liu Kai, Chou Lien-Yang, Cui Yi
Department of Materials Science and Engineering, Stanford University, Stanford, California 94305, United States.
SLAC National Accelerator Laboratory, Stanford Institute for Materials and Energy Sciences, 2575 Sand Hill Road, Menlo Park, California 94025, United States.
Nano Lett. 2020 Mar 11;20(3):1686-1692. doi: 10.1021/acs.nanolett.9b04815. Epub 2020 Feb 5.
Safety issues in lithium-ion batteries have raised serious concerns due to their ubiquitous utilization and close contact with the human body. Replacing flammable liquid electrolytes, solid-state electrolytes (SSEs) is thought to address this issue as well as provide unmatched energy densities in Li-based batteries. However, among the most intensively studied SSEs, polymeric solid electrolyte and polymer/ceramic composites are usually flammable, leaving the safety issue unattended. Here, we report the first design of a fireproof, ultralightweight polymer-polymer SSE. The SSE is composed of a porous mechanic enforcer (polyimide, PI), a fire-retardant additive (decabromodiphenyl ethane, DBDPE), and a ionic conductive polymer electrolyte (poly(ethylene oxide)/lithium bis(trifluoromethanesulfonyl)imide). The whole SSE is made from organic materials, with a thin, tunable thickness (10-25 μm), which endorse the energy density comparable to conventional separator/liquid electrolytes. The PI/DBDPE film is thermally stable, nonflammable, and mechanically strong, preventing Li-Li symmetrical cells from short-circuiting after more than 300 h of cycling. LiFePO/Li half cells with our SSE show a high rate performance (131 mAh g at 1 C) as well as cycling performance (300 cycles at C/2 rate) at 60 °C. Most intriguingly, pouch cells made with our polymer-polymer SSE still functioned well even under flame abuse tests.
锂离子电池的安全问题因其广泛应用以及与人体的密切接触而引发了严重关注。固态电解质(SSEs)作为易燃液体电解质的替代品,被认为既能解决这一问题,又能在锂电池中提供无与伦比的能量密度。然而,在研究最为深入的固态电解质中,聚合物固态电解质和聚合物/陶瓷复合材料通常易燃,安全问题依然存在。在此,我们报道了首个防火、超轻聚合物-聚合物固态电解质的设计。该固态电解质由多孔机械增强体(聚酰亚胺,PI)、阻燃添加剂(十溴二苯醚,DBDPE)和离子导电聚合物电解质(聚环氧乙烷/双(三氟甲烷磺酰)亚胺锂)组成。整个固态电解质由有机材料制成,厚度薄且可调(10 - 25μm),这使其能量密度可与传统隔膜/液体电解质相媲美。PI/DBDPE膜热稳定性好、不可燃且机械强度高,可防止锂-锂对称电池在循环300多小时后短路。采用我们的固态电解质的磷酸铁锂/锂半电池在60℃下显示出高倍率性能(1C时为131 mAh g)以及循环性能(C/2倍率下300次循环)。最引人注目的是,采用我们的聚合物-聚合物固态电解质制成的软包电池即使在火焰滥用测试下仍能正常工作。