Lithium hexafluorophosphate (LiPF6)-based carbonate electrolytes are widely used in commercial lithium-ion batteries (LIBs), but their thermal instability limits the cycle life and safety of LIBs at elevated temperatures. Few studies have yielded insight into the initial PF6− decomposition reaction that promotes thermal instability of LiPF6-based electrolytes. Here, we find that lithium-ion hopping assisted by the overall reorientational motion of propylene carbonate molecules facilitates PF6− decomposition at elevated temperatures in 1 M LiPF6/propylene carbonate electrolyte. Further, we demonstrate that urea additives, by preventing lithium-ion hopping, suppress the initial LiPF6 decomposition reaction and enhance the thermal stability of the electrolyte. LIB cell tests with LiNi0.6Mn0.2Co0.2O2||Li4Ti5O12 show improved LIB performance at elevated temperatures with the thermally stabilized electrolyte. This study provides key insights into the design of thermally stable LiPF6-based carbonate electrolytes for improving the cycle life, calendar life, and safety of LIBs in elevated-temperature applications.

Lithium-ion hopping weakens thermal stability of LiPF6 carbonate electrolytes / Han, K. S.; Lee, M. -S.; Kim, N.; Choi, D.; Chae, S.; Ryu, J.; Piccini, G.; Rousseau, R.; Thomsen, E. C.. - In: CELL REPORTS PHYSICAL SCIENCE. - ISSN 2666-3864. - 5:1(2024), pp. 1-14. [10.1016/j.xcrp.2023.101768]

Lithium-ion hopping weakens thermal stability of LiPF6 carbonate electrolytes

Piccini G.;
2024

Abstract

Lithium hexafluorophosphate (LiPF6)-based carbonate electrolytes are widely used in commercial lithium-ion batteries (LIBs), but their thermal instability limits the cycle life and safety of LIBs at elevated temperatures. Few studies have yielded insight into the initial PF6− decomposition reaction that promotes thermal instability of LiPF6-based electrolytes. Here, we find that lithium-ion hopping assisted by the overall reorientational motion of propylene carbonate molecules facilitates PF6− decomposition at elevated temperatures in 1 M LiPF6/propylene carbonate electrolyte. Further, we demonstrate that urea additives, by preventing lithium-ion hopping, suppress the initial LiPF6 decomposition reaction and enhance the thermal stability of the electrolyte. LIB cell tests with LiNi0.6Mn0.2Co0.2O2||Li4Ti5O12 show improved LIB performance at elevated temperatures with the thermally stabilized electrolyte. This study provides key insights into the design of thermally stable LiPF6-based carbonate electrolytes for improving the cycle life, calendar life, and safety of LIBs in elevated-temperature applications.
2024
5
1
1
14
Lithium-ion hopping weakens thermal stability of LiPF6 carbonate electrolytes / Han, K. S.; Lee, M. -S.; Kim, N.; Choi, D.; Chae, S.; Ryu, J.; Piccini, G.; Rousseau, R.; Thomsen, E. C.. - In: CELL REPORTS PHYSICAL SCIENCE. - ISSN 2666-3864. - 5:1(2024), pp. 1-14. [10.1016/j.xcrp.2023.101768]
Han, K. S.; Lee, M. -S.; Kim, N.; Choi, D.; Chae, S.; Ryu, J.; Piccini, G.; Rousseau, R.; Thomsen, E. C.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1330713
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