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Polyethylene ceramic separators with semi-interpenetrating polymer network boosting fast-charging cycle capacity retention and safety for lithium-ion batteries

Pengfei Lv, Di Zhang, Yan Lin, Hang Shi, Song Xie, Qiang Sun, Xiantao Chen, Yuanhua He, Changyu Tang

2023Journal of Power Sources13 citationsDOI

Topics & Concepts

Materials sciencePolyurethaneElectrolyteSeparator (oil production)Chemical engineeringAcrylateCeramicPolymerLithium (medication)Faraday efficiencyComposite materialElectrodeChemistryEndocrinologyPhysicsPhysical chemistryEngineeringThermodynamicsMedicineMonomerAdvancements in Battery MaterialsAdvanced Battery Materials and TechnologiesAdvanced Battery Technologies Research
Polyethylene ceramic separators with semi-interpenetrating polymer network boosting fast-charging cycle capacity retention and safety for lithium-ion batteries | Litcius