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- W3154451104 abstract "• Thermally conductive, flame resistant, and mechanically robust nanocellulose composites was prepared. • BNNS was functionalized with ammonium polyphosphate (APP) by electrostatic assembly strategy. • Strong hydrogen-bonding interaction was formed between BNNS-p-APP with cellulose nanofibers (CNFs). • CNFs/BNNS-p-APP composites can improve the heat dissipation and fire safety of electronic products. Highly thermally conductive and flame resistant nanocellulose-based composites can synchronously achieve efficient thermal dissipation and low fire hazards of electronic devices, which shows great promise in next-generation green and flexible electronics. However, it has long been intractable to optimize the high thermal conductivity (TC) and flame resistance simultaneously. Herein, synergetic integration of high TC and flame resistance in nacre-like nanocellulose composites has been successfully achieved by the vacuum-assisted filtration of cellulose nanofibers (CNFs) and functionalized boron nitride nanosheets (BNNS-p-APP). Benefiting from the highly oriented hierarchical microstructure, strong hydrogen-bonding interaction, and successful immobilization of ammonium polyphosphate (APP), the as-obtained CNFs/BNNS-p-APP composite film achieves a high in-plane TC of 9.1 W m −1 K −1 and outstanding flame resistance. Meantime, this eco-friendly nanocellulose-based composite also exhibits remarkable flexibility, folding endurance, and mechanical robustness, robustness, which may open up a new opportunity for the thermal management of flexible electronics." @default.
- W3154451104 created "2021-04-26" @default.
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- W3154451104 date "2021-07-01" @default.
- W3154451104 modified "2023-09-26" @default.
- W3154451104 title "Synergetic integration of thermal conductivity and flame resistance in nacre‐like nanocellulose composites" @default.
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- W3154451104 doi "https://doi.org/10.1016/j.carbpol.2021.118058" @default.
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