This review presents a survey of the literature on recent progress in lithium-ion batteries, with the active sub-micron-sized particles of the positive electrode chosen in the family of lamellar compounds LiMO2, where M stands for a mixture of Ni, Mn, Co elements, and in the family of yLi2MnO3•(1 − y)LiNi½Mn½O2 layered-layered integrated materials. The structural, physical, and chemical properties of these cathode elements are reported and discussed as a function of all the synthesis parameters, which include the choice of the precursors and of the chelating agent, and as a function of the relative concentrations of the M cations and composition y. Their electrochemical properties are also reported and discussed to determine the optimum com...
International audienceLi and Mn-rich layered oxides, i.e. Li1+xM1-xO2 (M = Mn, Ni and Co), are attra...
International audienceLi and Mn-rich layered oxides, i.e. Li1+xM1-xO2 (M = Mn, Ni and Co), are attra...
Compared with LiCoO2, the dominant cathode material in today's lithium batteries, lithium nickel oxi...
This review presents a survey of the literature on recent progress in lithium-ion batteries, with th...
International audienceThis review presents a survey of the literature on recent progress in lithium-...
International audienceThis review presents a survey of the literature on recent progress in lithium-...
International audienceThis review presents a survey of the literature on recent progress in lithium-...
The layered LiCoO2 cathode has been used in lithium ion batteries (LIB) since 1990s for portable ele...
A new lithium rich composite positive electrode material of the composition 0.3Li2MnO3.0.7LiNi0.5Co0...
Lithium-rich layered powders, Li2MnO3-stabilized LiMO2 (M = Ni, Co, Mn), are attractive cathode cand...
A strategy used to design high capacity (\u3e 200 mAh g-1), Li2MnO3-stabilized LiMO2 (M = Mn, Ni, Co...
Currently, LiCoO2 has been the most widely used as a commercial cathode material for the lithium sec...
Amongst a number of different cathode materials, the layered nickel-rich LiNiyCoxMn1−y−xO2 and the i...
A new approach to synthesizing high capacity lithium-metal-oxide cathodes for lithium-ion batteries ...
International audienceLi and Mn-rich layered oxides, i.e. Li1+xM1-xO2 (M = Mn, Ni and Co), are attra...
International audienceLi and Mn-rich layered oxides, i.e. Li1+xM1-xO2 (M = Mn, Ni and Co), are attra...
International audienceLi and Mn-rich layered oxides, i.e. Li1+xM1-xO2 (M = Mn, Ni and Co), are attra...
Compared with LiCoO2, the dominant cathode material in today's lithium batteries, lithium nickel oxi...
This review presents a survey of the literature on recent progress in lithium-ion batteries, with th...
International audienceThis review presents a survey of the literature on recent progress in lithium-...
International audienceThis review presents a survey of the literature on recent progress in lithium-...
International audienceThis review presents a survey of the literature on recent progress in lithium-...
The layered LiCoO2 cathode has been used in lithium ion batteries (LIB) since 1990s for portable ele...
A new lithium rich composite positive electrode material of the composition 0.3Li2MnO3.0.7LiNi0.5Co0...
Lithium-rich layered powders, Li2MnO3-stabilized LiMO2 (M = Ni, Co, Mn), are attractive cathode cand...
A strategy used to design high capacity (\u3e 200 mAh g-1), Li2MnO3-stabilized LiMO2 (M = Mn, Ni, Co...
Currently, LiCoO2 has been the most widely used as a commercial cathode material for the lithium sec...
Amongst a number of different cathode materials, the layered nickel-rich LiNiyCoxMn1−y−xO2 and the i...
A new approach to synthesizing high capacity lithium-metal-oxide cathodes for lithium-ion batteries ...
International audienceLi and Mn-rich layered oxides, i.e. Li1+xM1-xO2 (M = Mn, Ni and Co), are attra...
International audienceLi and Mn-rich layered oxides, i.e. Li1+xM1-xO2 (M = Mn, Ni and Co), are attra...
International audienceLi and Mn-rich layered oxides, i.e. Li1+xM1-xO2 (M = Mn, Ni and Co), are attra...
Compared with LiCoO2, the dominant cathode material in today's lithium batteries, lithium nickel oxi...