Publication | Closed Access
Effects of Heat Setting on the Morphology and Performance of Polypropylene Separator for Lithium Ion Batteries
33
Citations
37
References
2019
Year
EngineeringNanoporous MaterialMechanical EngineeringExperimental ThermodynamicsChemistryChemical EngineeringPolypropylene SeparatorThermodynamicsPolymer ChemistryX-ray ScatteringMaterials ScienceSolid-state IonicThermoanalytical MethodLithium-ion BatteryLithium-ion BatteriesEnergy StorageHeat TransferSolid-state BatteryLithium Ion BatteriesMicrostructureRatio λHeat Setting TemperatureHigh Temperature MaterialsPolymer ScienceBatteriesThermal EngineeringThermophysical Property
In this study, effects of heat setting treatment (pre-set heat setting ratio λ and heat setting temperature Tsetting) on the crystalline structures, orientation status, microporous structures, gas permeability, and electrochemical performance of the separators were studied in detail by means of differential scanning calorimetry (DSC), infrared dichroism, scanning electron microscope (SEM), ultrasmall angle X-ray scattering (U-SAXS), Gurley value test, and electrochemical measurement. It was found that with the decrease of λ or the increase of Tsetting, the melting temperature and degree of crystallinity change regularly and the orientation degree decreases gradually, resulting in small-sized micropores and lower porosity and S/V ratio of the separator. Finally, the gas permeability and ionic conductivity of the separator decreased while the dimensional stability increased. By tuning λ and Tsetting, the microstructure, morphology, and performance of the separators can be efficiently controlled.
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2016 | 699 | |
2008 | 217 | |
2009 | 193 | |
2009 | 161 | |
2018 | 132 | |
2015 | 104 | |
2017 | 90 | |
2009 | 89 | |
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2018 | 87 |
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