© 2020 The Authors. Published by WILEY-VCH Verlag GmbH & Co. KGaA, WeinheimA breakthrough utilizing an anionic redox reaction (O2−/On−) for charge compensation has led to the development of high-energy cathode materials in sodium-ion batteries. However, its reaction results in a large voltage hysteresis due to the structural degradation arising from an oxygen loss. Herein, an interesting P2-type Mn-based compound exhibits a distinct two-phase behavior preserving a high-potential anionic redox (≈4.2 V vs Na+/Na) even during the subsequent cycling. Through a systematic series of experimental characterizations and theoretical calculations, the anionic redox reaction originating from O 2p-electron and the reversible unmixing of Na-rich and Na-p...
Layered transition-metal oxides have attracted intensive interest for cathode materials of sodium-io...
In the search for high-energy cathode materials for Na-ion batteries (NIBs), Fe-doped layered transi...
Anionic redox reaction (ARR) in lithium- and sodium-ion batteries is under hot discussion, mainly re...
P2-type sodium layered transition metal oxides have been intensively investigated as promising catho...
Anionic-redox-based layered oxide materials are considered promising cathodes for Na-ion batteries b...
International audienceThe need to store an ever increasing amount of renewable energy in a sustainab...
International audienceThe activation of anionic redox couple is recognized as one of the best way to...
The inclusion of nickel and manganese in layered sodium metal oxide cathodes for sodium ion batterie...
Oxygen-based anionic redox reactions have recently emerged as a lever to increase the capacity of Mn...
The ever-increasing demand for large-scale energy storage has driven the prosperous investigation of...
The phase evolution and anion redox behaviours under electrochemical cycling of sodium transition me...
Layered metal oxides have attracted widespread attention as cathodes for Na-ion batteries (NIBs) bec...
The large-voltage hysteresis remains one of the biggest barriers to optimizing Li/Na-ion cathodes us...
Sodium ion batteries, because of their sustainability attributes, could be an attractive alternative...
Layered transition-metal oxides have attracted intensive interest for cathode materials of sodium-io...
In the search for high-energy cathode materials for Na-ion batteries (NIBs), Fe-doped layered transi...
Anionic redox reaction (ARR) in lithium- and sodium-ion batteries is under hot discussion, mainly re...
P2-type sodium layered transition metal oxides have been intensively investigated as promising catho...
Anionic-redox-based layered oxide materials are considered promising cathodes for Na-ion batteries b...
International audienceThe need to store an ever increasing amount of renewable energy in a sustainab...
International audienceThe activation of anionic redox couple is recognized as one of the best way to...
The inclusion of nickel and manganese in layered sodium metal oxide cathodes for sodium ion batterie...
Oxygen-based anionic redox reactions have recently emerged as a lever to increase the capacity of Mn...
The ever-increasing demand for large-scale energy storage has driven the prosperous investigation of...
The phase evolution and anion redox behaviours under electrochemical cycling of sodium transition me...
Layered metal oxides have attracted widespread attention as cathodes for Na-ion batteries (NIBs) bec...
The large-voltage hysteresis remains one of the biggest barriers to optimizing Li/Na-ion cathodes us...
Sodium ion batteries, because of their sustainability attributes, could be an attractive alternative...
Layered transition-metal oxides have attracted intensive interest for cathode materials of sodium-io...
In the search for high-energy cathode materials for Na-ion batteries (NIBs), Fe-doped layered transi...
Anionic redox reaction (ARR) in lithium- and sodium-ion batteries is under hot discussion, mainly re...