Aluminum-ion batteries have garnered an extensive amount of attention due to their superior electrochemical performance, low cost, and high safety. To address the limitation of battery performance, exploring new cathode materials and understanding the reaction mechanism for these batteries are of great significance. Among numerous candidates, multiple structures and valence states make manganese-based oxides the best choice for aqueous aluminum-ion batteries (AAIBs). In this work, a new cathode consists of γ-MnO2 with abundant oxygen vacancies. As a result, the electrode shows a high discharge capacity of 481.9 mAh g–1 at 0.2 A g–1 and a sustained reversible capacity of 128.6 mAh g–1 after 200 cycles at 0.4 A g–1. In particular, through de...
Aqueous aluminum-ion batteries are promising for sustainable energy storage given the abundance of a...
Sodium-ion batteries (SIBs) can develop cost-effective and safe energy storage technology for substa...
Anionic redox is another way of charge compensation to boost the energy density of the cathode mater...
The opportunity of exploring aluminium-ion batteries (AIBs) has surfaced in anticipation of future s...
Aqueous Al-ion batteries (AAIBs) are the subject of great interest due to the inherent safety and hi...
The development of new battery technology that utilizes abundant electrode materials that are enviro...
The development of new battery technology that utilizes abundant electrode materials that are enviro...
Rechargeable aqueous zinc ion batteries (ZIBs) have many advantages such as high abundance and low c...
Development of electrode materials and electrolytes with low overpotentials during oxygen reduction ...
Aluminum-ion batteries (AIBs) that operate with aqueous electrolytes exhibit considerably low cyclin...
Rechargeable aqueous Zn–MnO2 technology combines one of the oldest battery chemistries with favourab...
We report excellent cycling performance for P2–Na<sub>0.6</sub>Li<sub>0.2</sub>Mn<sub>0.8</sub>O<sub...
Aqueous rechargeable batteries (ARBs) are the most dependable energy storage devices (ESDs) due to t...
The advent of Aluminium-Ion Batteries (AIBs) has garnered more attention for its perceived ability...
Aqueous batteries like the alkaline battery, which utilizes the MnO₂/Zn chemistry, are recently rece...
Aqueous aluminum-ion batteries are promising for sustainable energy storage given the abundance of a...
Sodium-ion batteries (SIBs) can develop cost-effective and safe energy storage technology for substa...
Anionic redox is another way of charge compensation to boost the energy density of the cathode mater...
The opportunity of exploring aluminium-ion batteries (AIBs) has surfaced in anticipation of future s...
Aqueous Al-ion batteries (AAIBs) are the subject of great interest due to the inherent safety and hi...
The development of new battery technology that utilizes abundant electrode materials that are enviro...
The development of new battery technology that utilizes abundant electrode materials that are enviro...
Rechargeable aqueous zinc ion batteries (ZIBs) have many advantages such as high abundance and low c...
Development of electrode materials and electrolytes with low overpotentials during oxygen reduction ...
Aluminum-ion batteries (AIBs) that operate with aqueous electrolytes exhibit considerably low cyclin...
Rechargeable aqueous Zn–MnO2 technology combines one of the oldest battery chemistries with favourab...
We report excellent cycling performance for P2–Na<sub>0.6</sub>Li<sub>0.2</sub>Mn<sub>0.8</sub>O<sub...
Aqueous rechargeable batteries (ARBs) are the most dependable energy storage devices (ESDs) due to t...
The advent of Aluminium-Ion Batteries (AIBs) has garnered more attention for its perceived ability...
Aqueous batteries like the alkaline battery, which utilizes the MnO₂/Zn chemistry, are recently rece...
Aqueous aluminum-ion batteries are promising for sustainable energy storage given the abundance of a...
Sodium-ion batteries (SIBs) can develop cost-effective and safe energy storage technology for substa...
Anionic redox is another way of charge compensation to boost the energy density of the cathode mater...