Lithium manganese oxides substituted with nickel or cobalt were characterized electrochemically in lithium cell configurations. The compounds studied were either single-phase layered structures with either primarily O2 or O3 stacking arrangements, or O2/O3 intergrowths, prepared from P2, P3 and P2/P3 sodium-containing precursors, respectively. The stacking arrangements are extremely sensitive to the Na/T. M. (T. M. = transition metal) ratios and the level of substitution. Phase diagrams showing the stability regions of the various arrangements for the Na-Ni-Mn-O system are presented. A possible correlation between vacancies and electrochemical performance is suggested. For high levels of substitution with Ni, fewer defects are possible for ...
Layered transition-metal oxides are one kind of the most promising cathode materials for sodium-ion ...
The layered intercalation compounds Li(Mn1-yCoy)O-2; 0 less than or equal to y less than or equal to...
Compared with LiCoO2, the dominant cathode material in today's lithium batteries, lithium nickel oxi...
Layered substituted lithium manganese oxides suitable for use as lithium ion battery electrodes may ...
The structural and electrochemical characterization of layered Li{sub x}Al{sub y}Mn{sub 1-y}O{sub 2}...
The synthesis, characterisation and electrochemical performance of layered lithium manganese oxide m...
Layered Na0.7[Ni0.05Mn0.95]O2 compounds have been synthesized by a sol-gel method, using glycolic ac...
Layered LixMnyO2 materials with the O3 (alpha-NaFeO2) structure have been synthesised by a low tempe...
Abstract: One major challenge in the field of lithium-ion batteries is to understand the degradation...
Layered LixMn1-yCoyO2 with the O3 (alpha NaFeO2) structure has been prepared from the analogous P3 s...
International audienceX-ray amorphous manganese oxides were prepared by reduction of sodium permanga...
International audienceX-ray amorphous manganese oxides were prepared by reduction of sodium permanga...
Lithium-manganese oxide electrodes containing structurally integrated domains of layered and spinel ...
The Li-Mn-Ni-O system has received much attention for potential positive electrode materials in lith...
Compared with LiCoO2, the dominant cathode material in today's lithium batteries, lithium nickel oxi...
Layered transition-metal oxides are one kind of the most promising cathode materials for sodium-ion ...
The layered intercalation compounds Li(Mn1-yCoy)O-2; 0 less than or equal to y less than or equal to...
Compared with LiCoO2, the dominant cathode material in today's lithium batteries, lithium nickel oxi...
Layered substituted lithium manganese oxides suitable for use as lithium ion battery electrodes may ...
The structural and electrochemical characterization of layered Li{sub x}Al{sub y}Mn{sub 1-y}O{sub 2}...
The synthesis, characterisation and electrochemical performance of layered lithium manganese oxide m...
Layered Na0.7[Ni0.05Mn0.95]O2 compounds have been synthesized by a sol-gel method, using glycolic ac...
Layered LixMnyO2 materials with the O3 (alpha-NaFeO2) structure have been synthesised by a low tempe...
Abstract: One major challenge in the field of lithium-ion batteries is to understand the degradation...
Layered LixMn1-yCoyO2 with the O3 (alpha NaFeO2) structure has been prepared from the analogous P3 s...
International audienceX-ray amorphous manganese oxides were prepared by reduction of sodium permanga...
International audienceX-ray amorphous manganese oxides were prepared by reduction of sodium permanga...
Lithium-manganese oxide electrodes containing structurally integrated domains of layered and spinel ...
The Li-Mn-Ni-O system has received much attention for potential positive electrode materials in lith...
Compared with LiCoO2, the dominant cathode material in today's lithium batteries, lithium nickel oxi...
Layered transition-metal oxides are one kind of the most promising cathode materials for sodium-ion ...
The layered intercalation compounds Li(Mn1-yCoy)O-2; 0 less than or equal to y less than or equal to...
Compared with LiCoO2, the dominant cathode material in today's lithium batteries, lithium nickel oxi...