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 needed. Herein, we demonstrate that the reversibility of the cation migration of lithium-rich nickel manganese oxides can be remarkably improved by altering the oxygen stacking sequences in the layered structure and thereby dramatically reducing the voltage decay. The preeminent intra-cycl...
High capacity Li rich Mn based oxide cathodes show a great potential in next generation Li ion batte...
Archetypical layered oxide with oxygen redox capability bears an additional lithium ion in a transit...
High-voltage layered lithium- and manganese-rich (LMR) oxides have the potential to dramatically enh...
The use of high-energy-density lithium-rich layered-oxide electrodes in batteries is hindered by vol...
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 ...
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 oxides (LLOs) are considered promising cathode materials for lithium-ion batter...
Li- and Mn-rich layered oxides (LMRs) have emerged as practically feasible cathode materials for hig...
Lithium-rich layered oxides are promising candidate cathode materials for the Li-ion batteries with ...
2020 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Lithium-rich layered oxides are promising candidate ...
High capacity Li rich Mn based oxide cathodes show a great potential in next generation Li ion batte...
High capacity Li rich Mn based oxide cathodes show a great potential in next generation Li ion batte...
Archetypical layered oxide with oxygen redox capability bears an additional lithium ion in a transit...
High-voltage layered lithium- and manganese-rich (LMR) oxides have the potential to dramatically enh...
The use of high-energy-density lithium-rich layered-oxide electrodes in batteries is hindered by vol...
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 ...
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 oxides (LLOs) are considered promising cathode materials for lithium-ion batter...
Li- and Mn-rich layered oxides (LMRs) have emerged as practically feasible cathode materials for hig...
Lithium-rich layered oxides are promising candidate cathode materials for the Li-ion batteries with ...
2020 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Lithium-rich layered oxides are promising candidate ...
High capacity Li rich Mn based oxide cathodes show a great potential in next generation Li ion batte...
High capacity Li rich Mn based oxide cathodes show a great potential in next generation Li ion batte...
Archetypical layered oxide with oxygen redox capability bears an additional lithium ion in a transit...
High-voltage layered lithium- and manganese-rich (LMR) oxides have the potential to dramatically enh...