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Synthetic Polymer-based Membrane for Lithium Ion

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Synthetic Polymer-based Membrane for Lithium Ion ( synthetic-polymer-based-membrane-lithium-ion )

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This modification leads to superior wetting properties and preserves the ionic conduction through defect-induced ion transport and thin deposition thickness [130]. A new separator was designed and manufactured by applying multilayer functional coatings on both sides of a polyethylene separator as shown in Figure 5.10 [138]. Figure 5.10 - Schematic illustration of the fabrication of MCS and integrated cathode/MCS/anode assembly [138]. This separator demonstrates that the ceramic and adhesive layers, composed of uniform micron-sized spherical particles, prevent the suppression of Li+ diffusion between the NMC532 cathode and graphite anode while performing its intrinsic function and imparting thermal and mechanical stability [138]. Other strategy for the modification of PE separator was realized by coating with poly(p-phenylene terephthalamide) (PPTA) through a dip-coating and phase separation process in order to enhanced thermal-shutdown function [139]. PPTA coating does 34

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