Advanced Energy Materials · 2012 · 129 citations · 16 references
EngineeringImproved Thermal StabilityChemistryPolyester SeparatorsPolyester FibersChemical EngineeringAbuse ToleranceThermal StabilityPolymer ChemistryMaterials ScienceBattery Electrode MaterialsLithium-ion BatteryBattery AdditivesLithium-ion BatteriesEnergy StoragePolymer MembranesEnergy MaterialElectrochemistryLi-ion Battery MaterialsPolymer ScienceCathode MaterialsElectrochemical Energy StorageBatteriesAnode Materials
Abstract This report describes the preparation and performance of electro‐spun polyester‐based separators for lithium‐ion batteries. Polyester fibers (200–500 nm) are electro‐spun into nonwoven mats and pressed into separator sheets ∼55 μm thick. The resulting polyester separators are 75% porous, highly permeable (Gurley number (s/100 mL) = 6), and have good wettability with conventional carbonate‐based electrolyte. In NMC/graphite lithium‐ion cells, results show comparable performance to commercially available polyolefin separators (rate, capacity fade, and reactivity) but with improved thermal stability to >200 °C. The use of this higher melting temperature polymer separator is one approach to close the gap between potential thermal instabilities (softening, shrinking, melting, etc.) of separators and the onset of thermal runaway reactions of commonly used cathode materials.
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Rachel E. Gerver, Jeremy P. Meyers · Journal of The Electrochemical Society · 2011 · 180 citations
Engineering, Tabbed Planar Configurations, Energy Storage Device +20