The deposition of manganese ions dissolved from the cathode onto the interface between the solid electrolyte interphase (SEI) and graphite causes severe capacity fading in manganese oxide-based cells. The evolution of the SEI layer containing these Mn compounds and the corresponding instability of the layer are thoroughly investigated by artificially introducing soluble Mn ions into a 1 mol L-1 LiPF6 electrolyte solution. Deposition of dissolved Mn ions induces an oxygen-rich SEI layer that results from increased electrolyte decomposition, accelerating SEI growth. The spatial distribution of Mn shows that dissolved Mn ions diffuse through the porous layer and are deposited mostly at the inorganic layer/graphite interface. The Mn compound de...
International audienceX-ray amorphous manganese oxides were prepared by reduction of sodium permanga...
LiMn2O4-based Li-ion cells suffer from a limited cycle-life and a poor storage performance at 55°C b...
The failure mechanism of graphite/LiNi0.5Mn1.5O4 cells cycled at 25°C and 55°C have been analyzed by...
Comprehensive experiments are carried out in order to gain insight into the effect of manganese cont...
A thorough investigation of both manganese (Mn) deposition onto graphite and its side reactions was ...
Lithium ion batteries utilizing manganese-based cathodes have received considerable interest in rece...
Dissolution and migration of manganese from cathode lead to severe capacity fading of lithium mangan...
Dissolution of spinel manganese oxides and the concomitant cathodic capacity losses were examined in...
Transition metal dissolution from the cathode active material and its deposition on the anode causes...
International audienceThe deployment of energy dense positive electrode materials such as Ni-rich NM...
Mild-acid Zn-MnO2 batteries have been considered a promising alternative to Li-ion batteries for lar...
Magnesium redox chemistry is a very appealing “beyond Li ion chemistry” for realizing high energy de...
The sustainability through the energy and environmental costs involve the development of new cathode...
Manganese dioxide (MnO₂) appears to be an effective cathode material for a battery system. No studie...
The stability of the valence state of the 3d transition metal ions and the stoichiometry of LiMO2 (M...
International audienceX-ray amorphous manganese oxides were prepared by reduction of sodium permanga...
LiMn2O4-based Li-ion cells suffer from a limited cycle-life and a poor storage performance at 55°C b...
The failure mechanism of graphite/LiNi0.5Mn1.5O4 cells cycled at 25°C and 55°C have been analyzed by...
Comprehensive experiments are carried out in order to gain insight into the effect of manganese cont...
A thorough investigation of both manganese (Mn) deposition onto graphite and its side reactions was ...
Lithium ion batteries utilizing manganese-based cathodes have received considerable interest in rece...
Dissolution and migration of manganese from cathode lead to severe capacity fading of lithium mangan...
Dissolution of spinel manganese oxides and the concomitant cathodic capacity losses were examined in...
Transition metal dissolution from the cathode active material and its deposition on the anode causes...
International audienceThe deployment of energy dense positive electrode materials such as Ni-rich NM...
Mild-acid Zn-MnO2 batteries have been considered a promising alternative to Li-ion batteries for lar...
Magnesium redox chemistry is a very appealing “beyond Li ion chemistry” for realizing high energy de...
The sustainability through the energy and environmental costs involve the development of new cathode...
Manganese dioxide (MnO₂) appears to be an effective cathode material for a battery system. No studie...
The stability of the valence state of the 3d transition metal ions and the stoichiometry of LiMO2 (M...
International audienceX-ray amorphous manganese oxides were prepared by reduction of sodium permanga...
LiMn2O4-based Li-ion cells suffer from a limited cycle-life and a poor storage performance at 55°C b...
The failure mechanism of graphite/LiNi0.5Mn1.5O4 cells cycled at 25°C and 55°C have been analyzed by...