Abstract
The long-term cycling behavior of 24 promising electrolyte blends were systematically studied in LaPO 4 -coated Li(Ni 0.4 Mn 0.4 Co 0.2)O 2 /graphite pouch type Li-ion cells tested to 4.5 V at 55 • C. Capacity fade during cycling, charge-transfer resistance (R ct) before and after cycling as well as gas evolution during formation and also during cycling were examined and compared head-to-head. Of all the electrolytes tested, triallyl phosphate containing electrolytes including 2% vinylene carbonate + 2% triallyl phosphate in 1 M LiPF 6 sulfolane:ethyl methyl carbonate and 2% prop-1-ene sultone + 2% triallyl phosphate in 1M LiPF 6 ethylene carbonate:ethyl methyl carbonate electrolytes showed the best capacity retention, the least impedance growth and manageable amounts of gas evolution during long-term cycling. Pyridine boron trifluoride -based additives also showed ex-cellent cycling performance but cells with those additives had higher gas evolution during cycling. Cells containing fluorinated electrolytes had similar cycling performance to cells containing 2% prop-1-ene sultone in ethylene carbonate:ethyl methyl carbonate electrolyte but with much more gas evolution and higher impedance after long-term cycling. The results suggest that electrolytes containing the additives triallyl phosphate or pyridine boron trifluoride may be promising for high voltage Li-ion cells at elevated temperature.
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CITATION STYLE
Xia, J., Ma, L., Nelson, K. J., Nie, M., Lu, Z., & Dahn, J. R. (2016). A Study of Li-Ion Cells Operated to 4.5 V and at 55°C. Journal of The Electrochemical Society, 163(10), A2399–A2406. https://doi.org/10.1149/2.1211610jes
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