Study of triallyl phosphate as an electrolyte additive for high voltage lithium-ion cells
Jul 12, 2015·
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1 min read
Jian Xia
Lénaïc Madec
Lin Ma
Leah D. Ellis
Weitao Qiu
Kathlyne J. Nelson
Zhonghua Lu
Jeff R. Dahn
Abstract
Abstract The role of triallyl phosphate as an electrolyte additive in Li(Ni0.42 Mn0.42 Co0.16 )O2 /graphite pouch cells was studied using ex-situ gas measurements, ultra high precision coulometry, automated storage experiments, electrochemical impedance spectroscopy, long-term cycling and X-ray photoelectron spectroscopy. Cells containing triallyl phosphate produced less gas during formation, cycling and storage than control cells. The use of triallyl phosphate led to higher coulombic efficiency and smaller charge endpoint capacity slippage during ultra high precision charger testing. Cells containing triallyl phosphate showed smaller potential drop during 500 h storage at 40 ??C and 60 ??C and the voltage drop decreased as the triallyl phosphate content in the electrolyte increased. However, large amounts of triallyl phosphate (>3% by weight in the electrolyte) led to large impedance after cycling and storage. Symmetric cell studies showed large amounts of triallyl phosphate (5% or more) led to significant impedance increase at both negative and positive electrodes. X-ray photoelectron spectroscopy studies suggested that the high impedance came from the polymerization of triallyl phosphate molecules which formed thick solid electrolyte interphase films at the surfaces of both negative and positive electrodes. An optimal amount of 2%-3% triallyl phosphate led to better capacity retention during long term cycling.
Type
Publication
Journal of Power Sources
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Electrochemical Impedance Spectroscopy
Electrolyte Additive
High Voltage
Lithium Ion Batteries
Triallyl Phosphate
X-Ray Photoelectron Spectroscopy

Authors
Battery Research Scientist
Research Scientist at CNRS, specialized in electrochemistry, material chemistry and surface analysis in the field of Li, K and solid-state batteries and supercaps.
52 publications (3 reviews), h-index: 24, 1740 citations, 2 patents.