Physical Chemistry Chemical Physics · 2014 · 55 citations · 43 references
EngineeringElectrode-electrolyte InterfaceElevated TemperatureChemistryVinylene CarbonateEthylene CarbonateChemical EngineeringCorrosionElectrochemical InterfaceMaterials ScienceDepth Profile StudiesElectrochemical Power SourceAdvanced Electrode MaterialSurface ElectrochemistryBattery AdditivesLithium-ion BatteriesEnergy StorageSolid-state BatteryElectrochemical ProcessElectrochemistryLi-ion Battery MaterialsSurface ScienceCathode MaterialsElectrochemical Energy StorageBatteriesElectrochemical Surface Science
Lithium-ion batteries with vinylene carbonate (VC) in the electrolyte exhibit superior electrochemical and thermal behavior at elevated temperature, especially with a high Ni content in the cathode material. When VC is added to the electrolyte, polymeric species are formed on the cathode surface by a ring-opening reaction of ethylene carbonate (EC) in the electrolyte and VC, respectively. Through X-ray photoelectron spectroscopy (XPS) depth profiling, we have confirmed that these polymer layers are porous and complementary to each other. XPS results of C1s and O1s show that the outer surface and the inner layer consist of different components. Based on the XPS depth profiling results, we have suggested a reaction mechanism for the formation of a thermally stable layer on the cathode when vinylene carbonate is added to the electrolyte.
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Main aging mechanisms in Li ion batteries
M. Broussely, P. Biensan, Frédéric Bonhomme et al. · Journal of Power Sources · 2005 · 1.1K citations