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- W4285392017 abstract "Commercial polyolefin separators exhibit problems including shrinkage under high temperatures and poor electrolyte wettability and uptake, resulting in low ionic conductivity and safety problems. In this work, core-shell silica-polyphosphazene nanoparticles (SiO2@PZS) with different PZS layer thicknesses were synthesized and coated onto both sides of polyethylene (PE) microporous membranes to prepare composite membranes. Compared to pure silica-coated membranes and PE membranes, the PE-SiO2@PZS composite membrane had higher ionic conductivity. With the increase in the SiO2@PZS shell thickness, the electrolyte uptake, ionic conductivity and discharge capacity gradually increased. The discharge capacity of the PE-SiO2@PZS composite membrane at 8 C rate was 129 mAh/g, which was higher than the values of 107 mAh/g for the PE-SiO2 composite membrane and 104 mAh/g for the PE membrane." @default.
- W4285392017 created "2022-07-14" @default.
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- W4285392017 date "2022-07-13" @default.
- W4285392017 modified "2023-10-18" @default.
- W4285392017 title "Fabrication and Investigation of PE-SiO2@PZS Composite Separator for Lithium-Ion Batteries" @default.
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- W4285392017 doi "https://doi.org/10.3390/ma15144875" @default.
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