The use of high-energy-density lithium-rich layered-oxide electrodes in batteries is hindered by voltage decay on cycling. Improving the reversible cation migration by altering oxygen stacking is shown to suppress voltage decay and redox asymmetry in lithium-rich nickel manganese oxides. Despite the high energy density of lithium-rich layered-oxide electrodes, their real-world implementation in batteries is hindered by the substantial voltage decay on cycling. This voltage decay is widely accepted to mainly originate from progressive structural rearrangements involving irreversible transition-metal migration. As prevention of this spontaneous cation migration has proven difficult, a paradigm shift toward management of its reversibility is n...
High capacity Li rich Mn based oxide cathodes show a great potential in next generation Li ion batte...
International audienceThe structural stability and the redox mechanism of Li-rich layered oxides (LL...
High capacity Li rich Mn based oxide cathodes show a great potential in next generation Li ion batte...
Despite the high energy density of lithium-rich layered-oxide electrodes, their real-world implement...
Cobalt-free layered lithium-rich nickel manganese oxides, Li[LixNiyMn1−x−y]O2 (LLNMO), are promising...
Cobalt-free layered lithium-rich nickel manganese oxides, Li[LixNiyMn1−x−y]O2 (LLNMO), are promising...
Cobalt-free layered lithium-rich nickel manganese oxides, Li[LixNiyMn1-x-y]O-2 (LLNMO), are promisin...
Cobalt-free layered lithium-rich nickel manganese oxides, Li[LixNiyMn1-x-y]O-2 (LLNMO), are promisin...
Lithium-rich layered transition metal oxide positive electrodes offer access to anion redox at high ...
Lithium-rich layered transition metal oxide positive electrodes offer access to anion redox at high ...
International audienceThe structural stability and the redox mechanism of Li-rich layered oxides (LL...
Archetypical layered oxide with oxygen redox capability bears an additional lithium ion in a transit...
Li-rich Mn-based oxides (LRMO) are promising cathode materials to build next-generation lithium-ion ...
Lithium-rich layered oxides (LLOs) are considered promising cathode materials for lithium-ion batter...
High-voltage layered lithium- and manganese-rich (LMR) oxides have the potential to dramatically enh...
High capacity Li rich Mn based oxide cathodes show a great potential in next generation Li ion batte...
International audienceThe structural stability and the redox mechanism of Li-rich layered oxides (LL...
High capacity Li rich Mn based oxide cathodes show a great potential in next generation Li ion batte...
Despite the high energy density of lithium-rich layered-oxide electrodes, their real-world implement...
Cobalt-free layered lithium-rich nickel manganese oxides, Li[LixNiyMn1−x−y]O2 (LLNMO), are promising...
Cobalt-free layered lithium-rich nickel manganese oxides, Li[LixNiyMn1−x−y]O2 (LLNMO), are promising...
Cobalt-free layered lithium-rich nickel manganese oxides, Li[LixNiyMn1-x-y]O-2 (LLNMO), are promisin...
Cobalt-free layered lithium-rich nickel manganese oxides, Li[LixNiyMn1-x-y]O-2 (LLNMO), are promisin...
Lithium-rich layered transition metal oxide positive electrodes offer access to anion redox at high ...
Lithium-rich layered transition metal oxide positive electrodes offer access to anion redox at high ...
International audienceThe structural stability and the redox mechanism of Li-rich layered oxides (LL...
Archetypical layered oxide with oxygen redox capability bears an additional lithium ion in a transit...
Li-rich Mn-based oxides (LRMO) are promising cathode materials to build next-generation lithium-ion ...
Lithium-rich layered oxides (LLOs) are considered promising cathode materials for lithium-ion batter...
High-voltage layered lithium- and manganese-rich (LMR) oxides have the potential to dramatically enh...
High capacity Li rich Mn based oxide cathodes show a great potential in next generation Li ion batte...
International audienceThe structural stability and the redox mechanism of Li-rich layered oxides (LL...
High capacity Li rich Mn based oxide cathodes show a great potential in next generation Li ion batte...