Lim Heesoo, Chae Munseok S, Jamal Hasan, Khan Firoz, Jeon Injun, Kim Jongmin, Kim Jae Hyun
Division of Energy & Environmental Technology, DGIST, Daegu, 42988, Republic of Korea.
Department of Nanotechnology Engineering, Pukyong National University, Busan, 48547, Republic of Korea.
Small. 2025 Apr;21(14):e2406200. doi: 10.1002/smll.202406200. Epub 2024 Nov 3.
Lithium-metal batteries are currently recognized as promising next-generation technologies owing to their high energy density. Solid polymer electrolytes, particularly those based on polyethylene oxide (PEO), are lauded for their leakage resistance, safety, and flexible design. Despite the ongoing fire safety- and ionic conductivity-related concerns, a novel noncombustible solid polymer electrolytes with superior ionic conductivities are introduced here with additive decabromodiphenyl ethane and zeolite. To enhance the mechanical strength and ensure soft interactions at the electrode interface, a triple-layer structure with self-extinguishing properties and robust ionic conductivity is proposed. Notably, the softness at the electrode interface intensifies as the LiTFSI concentration increases; this higher concentration negatively impacts PEO crystallinity, enhancing the ionic conductivity owing to the presence of free Li and TFSI ions. This novel electrolyte can achieve a conductivity of 1.5 mS cm at 60 °C, maintain anodic stability up to 4.8 V, and exhibit flame retardancy. Furthermore, adding LiTFSI at 60% relative to PEO is shown to reduce LiF formation on the surface, enhancing anode stability. The [LiFePO/triple-layered electrolyte/Li] lithium-metal batteries are capable of an initial capacity of 153 mAh g, sustained superior capacity retention of 87.9%, and high Coulombic efficiency (99.6%) over 1000 cycles at a 1C rate.
锂金属电池因其高能量密度,目前被认为是很有前景的下一代技术。固体聚合物电解质,特别是那些基于聚环氧乙烷(PEO)的电解质,因其抗泄漏、安全性和灵活的设计而受到赞誉。尽管存在与消防安全和离子电导率相关的持续问题,但本文引入了一种具有优异离子电导率的新型不燃固体聚合物电解质,其添加剂为十溴二苯醚和沸石。为了提高机械强度并确保电极界面处的软相互作用,提出了一种具有自熄性能和强大离子电导率的三层结构。值得注意的是,随着双(三氟甲基磺酰)亚胺锂(LiTFSI)浓度的增加,电极界面处的柔软性增强;这种较高的浓度对PEO结晶度有负面影响,由于游离的Li和TFSI离子的存在,提高了离子电导率。这种新型电解质在60°C时可实现1.5 mS cm的电导率,保持高达4.8 V的阳极稳定性,并具有阻燃性。此外,相对于PEO以60%的比例添加LiTFSI可减少表面LiF的形成,提高阳极稳定性。[磷酸铁锂/三层电解质/锂]锂金属电池在1C倍率下,初始容量为153 mAh g,在1000次循环中持续保持87.9%的优异容量保持率和99.6%的高库仑效率。