Zhu Haipeng, Wang Wenran, Xu Baolei, Ma Li, Zhu Hai, Zhang Chunxiao, Chen Libao, Wei Weifeng
State Key Laboratory of Powder Metallurgy, Central South University, Changsha 410083, Hunan, P. R. China.
Hunan Key Laboratory of Applied Environmental Photocatalysis, Changsha University, Changsha 410022, Hunan, P. R. China.
ACS Appl Mater Interfaces. 2025 Jul 2;17(26):37889-37896. doi: 10.1021/acsami.5c05073. Epub 2025 Jun 17.
The inherent high reactivity of lithium metal and the nonuniform deposition/stripping behavior of Li during the cycle lead to the deterioration of performance and safety risks of lithium metal batteries. Herein, we designed and fabricated a multifunctional ferroelectric (β-PVDF) composite separator with dipole directional arrangement. Detailed characterization indicates that the directional arrangement of negative dipoles caused by spontaneous polarization of ferroelectric coatings induces anion interface confinement and promotes the complete reduction of lithium salts, thereby constructing a robust solid-electrolyte interphase (SEI) rich in inorganic species on the Li metal anode surface. The SEI can ensure the uniform distribution and rapid migration of Li as well as high interface stability. As a result, the Li||Li symmetrical cell with ferroelectric composite separator achieves an ultralong cycle life of more than 4000 h at 2.5 mA/cm to 2.5 mAh/cm. The full cell with a high mass loading (12 mg/cm) of the LiFePO cathode shows a high capacity retention of 96.84% after 960 cycles. This universal strategy may provide a perspective for regulating SEI chemistry by introducing functional coatings with multiphysical fields to regulate and limit anion migration.
锂金属固有的高反应活性以及锂在循环过程中不均匀的沉积/剥离行为,导致锂金属电池的性能下降和安全风险。在此,我们设计并制备了一种具有偶极定向排列的多功能铁电(β-聚偏氟乙烯)复合隔膜。详细表征表明,铁电涂层自发极化引起的负偶极定向排列诱导了阴离子界面限制,并促进锂盐的完全还原,从而在锂金属阳极表面构建了富含无机物种的坚固固体电解质界面(SEI)。该SEI能够确保锂的均匀分布和快速迁移以及高界面稳定性。结果,具有铁电复合隔膜的Li||Li对称电池在2.5 mA/cm²至2.5 mAh/cm²的条件下实现了超过4000小时的超长循环寿命。具有高质量负载(12 mg/cm²)的磷酸铁锂阴极的全电池在960次循环后显示出96.84%的高容量保持率。这种通用策略可能为通过引入具有多物理场的功能涂层来调节和限制阴离子迁移以调控SEI化学提供一个视角。