Affiliation:
1. Beijing Key Laboratory of Environmental Science and Engineering School of Materials Science and Engineering Beijing Institute of Technology Beijing 100081 China
2. Advanced Technology Research Institute Beijing Institute of Technology Jinan 250300 China
Abstract
AbstractSolid electrolyte interphase (SEI) crucially affects the rate performance and cycling lifespan, yet to date more extensive research is still needed in potassium‐ion batteries. We report an ultra‐thin and KF‐enriched SEI triggered by tuned fluorinated surface design in electrode. Our results reveal that fluorination engineering alters the interfacial chemical environment to facilitate inherited electronic conductivity, enhance adsorption ability of potassium, induce localized surface polarization to guide electrolyte decomposition behavior for SEI formation, and especially, enrich the KF crystals in SEI by self‐sacrifice from C−F bond cleavage. Hence, the regulated fluorinated electrode with generated ultra‐thin, uniform, and KF‐enriched SEI shows improved capacity of 439.3 mAh g−1 (3.82 mAh cm−2), boosted rate performance (202.3 mAh g−1 at 8.70 mA cm−2) and durable cycling performance (even under high loading of ~8.7 mg cm−2). We expect this practical engineering principle to open up new opportunities for upgrading the development of potassium‐ion batteries.
Funder
National Natural Science Foundation of China
Natural Science Foundation of Beijing Municipality
National Key Research and Development Program of China