Lixing Xue, Hongyan Pan, Yuejun Wang, Shu Hong, Qian Lin, Kuo Zhang, Kuo Zhang, Xiangnan Bu, Maohui Bai, Kun Zhang, Kun Zhang, Bo Hong
Fluorinated solvents and gel electrolytes offer potential for safe sodium-ion batteries (SIBs); yet, conventional acrylate gels show polarity mismatch, poor compatibility, and sluggish Na + transport. Here, we develop an all-fluorinated gel electrolyte by introducing a low-surface-energy perfluorinated acrylate monomer (PFHEA) into an FEMC/TFPC system. The −C 8 F 17 chains enable polarity matching and uniform gelation, improving wettability, reducing interfacial resistance, and restructuring the Na + solvation environment. Molecular dynamics and spectroscopic results indicate enhanced contact-ion pair formation and fluorine-rich SEI/CEI layers, boosting transport kinetics, interfacial stability, and thermal tolerance. Consequently, 2.6 Ah NCFM||HC pouch cells retain 88.1% capacity after 2600 cycles at 25 °C─representing 2–3-fold longer lifetimes than previously reported Ah-level Na pouch cells. A 115 Ah pouch cell further exhibits a negligible temperature rise during nail penetration, confirming intrinsic flame retardancy. This PFHEA-based gel provides a feasible route toward safe SIBs.