Abstract Herein, the ferrocene redox indicator-based surface film characteristics of spinel lithium manganese oxide (LMO) were evaluated. The pre-cycling of spinel LMO generated a film on the LMO surface. The surface film deposited on LMO surface suppresses further electrolyte decomposition, while the penetration of approximately 0.7 nm-sized redox indicator is not prevented. The facile self-discharge of LMO and regeneration current from the ferrocenium molecule was observed from the redox indicator in a specifically designed four-electrode cell. From this electrochemical behavior, a small-sized HF molecule attack on the LMO surface through a carbonate-based electrolyte-derived film is defined; hence, the prevention of small-sized molecules...
cited By 129International audienceHigh-voltage spinel oxides combined with Li4Ti5O 12 result in 3 V ...
A mathematical model for the capacity fade of a LiMn2O4 (LMO) electrode is developed in this paper b...
International audienceReliable development of Li-ion Batteries requires a good understanding of the ...
Herein, the ferrocene redox indicator-based surface film characteristics of spinel lithium manganese...
Degradation of LiMn2O4 in LiPF6-based electrolyte solution is complicated due to the influence of PF...
The evolution of surface film on aspect of chemical composition and thickness is monitored on a nick...
Motivated by new applications including electric vehicles and the smart grid, interest in advanced l...
A mathematical model for the capacity fade of a LiMn2O4 (LMO) electrode is developed in this paper b...
LiMn2O4 is ideal as a high-capacity Li-ion battery cathode material by virtue of its low toxicity, l...
Transition metal (TM) dissolution is a process experienced by most cathode materials based on lithiu...
Recent work has identified enhanced charge-storage capacity in the spinel lithium manganese oxide (L...
Carbon additives of different surface area were incorporated in LixMn2O4 composite cathodes and thei...
The longevity of lithium-ion batteries is determined by the rate of chemical and electrochemical sid...
Spinel lithium manganese oxide (LiMn2O4) has attracted much attention as a promising cathode materia...
The capacity fade of lithium manganate-based cells is associated with the dissolution of Mn from cat...
cited By 129International audienceHigh-voltage spinel oxides combined with Li4Ti5O 12 result in 3 V ...
A mathematical model for the capacity fade of a LiMn2O4 (LMO) electrode is developed in this paper b...
International audienceReliable development of Li-ion Batteries requires a good understanding of the ...
Herein, the ferrocene redox indicator-based surface film characteristics of spinel lithium manganese...
Degradation of LiMn2O4 in LiPF6-based electrolyte solution is complicated due to the influence of PF...
The evolution of surface film on aspect of chemical composition and thickness is monitored on a nick...
Motivated by new applications including electric vehicles and the smart grid, interest in advanced l...
A mathematical model for the capacity fade of a LiMn2O4 (LMO) electrode is developed in this paper b...
LiMn2O4 is ideal as a high-capacity Li-ion battery cathode material by virtue of its low toxicity, l...
Transition metal (TM) dissolution is a process experienced by most cathode materials based on lithiu...
Recent work has identified enhanced charge-storage capacity in the spinel lithium manganese oxide (L...
Carbon additives of different surface area were incorporated in LixMn2O4 composite cathodes and thei...
The longevity of lithium-ion batteries is determined by the rate of chemical and electrochemical sid...
Spinel lithium manganese oxide (LiMn2O4) has attracted much attention as a promising cathode materia...
The capacity fade of lithium manganate-based cells is associated with the dissolution of Mn from cat...
cited By 129International audienceHigh-voltage spinel oxides combined with Li4Ti5O 12 result in 3 V ...
A mathematical model for the capacity fade of a LiMn2O4 (LMO) electrode is developed in this paper b...
International audienceReliable development of Li-ion Batteries requires a good understanding of the ...