科技报告详细信息
Improving the Performance of Lithium Ion Batteries at Low Temperature
Trung H. Nguyen ; Peter Marren ; Kevin Gering
关键词: ANODES;    CAPACITY;    CARBON;    CARBONATES;    CATHODES;    DIFFUSION;    ELECTRODES;    ELECTROLYTES;    ENERGY STORAGE;    ETHYLENE;    IMPEDANCE;    KINETICS;    LITHIUM IONS;    OXIDES;    PERFORMANCE;    PLATING;    S;   
DOI  :  10.2172/1010605
RP-ID  :  DE-ER84531- Final Report
PID  :  OSTI ID: 1010605
Others  :  Other: EIC205051
Others  :  TRN: US201110%%599
美国|英语
来源: SciTech Connect
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【 摘 要 】

The ability for Li-ion batteries to operate at low temperatures is extremely critical for the development of energy storage for electric and hybrid electric vehicle technologies. Currently, Li-ion cells have limited success in operating at temperature below –10 deg C. Electrolyte conductivity at low temperature is not the main cause of the poor performance of Li-ion cells. Rather the formation of a tight interfacial film between the electrolyte and the electrodes has often been an issue that resulted in a progressive capacity fading and limited discharge rate capability. The objective of our Phase I work is to develop novel electrolytes that can form low interfacial resistance solid electrolyte interface (SEI) films on carbon anodes and metal oxide cathodes. From the results of our Phase I work, we found that the interfacial impedance of Fluoro Ethylene Carbonate (FEC) electrolyte at the low temperature of –20degC is astonishingly low, compared to the baseline 1.2M LiPFEMC:EC:PC:DMC (10:20:10:60) electrolyte. We found that electrolyte formulations with fluorinated carbonate co-solvent have excellent film forming properties and better de-solvation characteristics to decrease the interfacial SEI film resistance and facilitate the Li-ion diffusion across the SEI film. The very overwhelming low interfacial impedance for FEC electrolytes will translate into Li-ion cells with much higher power for cold cranking and high Regen/charge at the low temperature. Further, since the SEI film resistance is low, Li interaction kinetics into the electrode will remain very fast and thus Li plating during Regen/charge period be will less likely to happen.

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