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Program Scientific Program
POS6-0194

Chemically Anchored Organic-Inorganic Hybrid Separators for Safe and Durable Lithium-Ion Batteries

Topic

S6. Emerging Polymer and Hybrid Materials for Advanced Energy Storage and Conversion

When and Where

Sep 29, 2026   08:30 - 09:30
Room 301 (Grand Ballroom)

Session Chairs

Hae Jung SON
Boseok KANG

Presenter(s)

Min Seo Jo (Seoul national university)

Co-Author(s)

Jimin Shim (Seoul national university)

Abstract

Commercial polyolefin separators for Li-ion batteries suffer from severe thermal shrinkage and hydrophobicity, which limit their safety and performance. Ceramic coatings often delaminate because binders rely on weak non-covalent interactions. Here, we report a multifunctional flame-retardant separator based on a photoactive binder, benzophenone-functionalized polyacrylic acid (BPA). The BPA-boehmite water-based slurry is covalently anchored to polyethylene (PE) separators via ultraviolet (UV) irradiation. This process generates C-C bonds with the PE surface while inducing self-cross-linking, creating a network that acts as a rigid thermal skeleton and hydrophilic interface. This architecture provides superior heat resistance and adhesion, while the boehmite layer enhances Li+ transport and provides flame retardancy via endothermic dehydration. This covalent anchoring strategy offers a scalable platform for advanced separators, ensuring high safety and long-term reliability.
Supported by
Korea Tourism Organization BUSAN TOURISM ORGANIZATION
Sponsored by
DONGWOO FINE-CHEM Co., Ltd. Korea Research Institute of Chemical Technology Advanced Materials Division Sejin CI DONGJIN SEMICHEM HAEDONG SCIENCE FOUNDATION COSMAX EcoProBM Young Eng. Sci. Doosan SAMSUNG SDI S-OIL 한국도레이과학진흥재단