Rechargeable magnesium batteries have lately received great attention for large-scale energy storage systems due to their high volumetric capacities, low materials cost, and safe characteristic. However, the bivalency of Mg2+ ions has made it challenging to find cathode materials operating at high voltages with decent (de)intercalation kinetics. In an effort to overcome this challenge, we adopt an unconventional approach of engaging crystal water in the layered structure of Birnessite MnO2 because the crystal water can effectively screen electrostatic interactions between Mg2+ ions and the host anions. The crucial role of the crystal water was revealed by directly visualizing its presence and dynamic rearrangement using scanning transmissio...
Hydrated materials contain crystal water within their crystal frameworks and can exhibit extraordina...
Commercial LiMn2O4 powder was used as the base material for probing magnesiation, cycling behavior, ...
Two-dimensional birnessite has attracted attention for electrochemical energy storage because of the...
Layered transition metal oxides are considered promising cathodes for sodium ion batteries (SIBs) du...
Aqueous zinc (Zn)-ion batteries are gaining considerable attention as grid-scale energy storage syst...
Magnesium batteries are an energy storage system that potentially offers high energy density, but de...
It is well known that many layered transition metal oxides can transform into a spinel structure upo...
Layered transition metal oxides are considered promising cathodes for sodium ion batteries (SIBs) du...
Considering the improved safety, reduced cost, and high volumetric energy density associated with Mg...
Rechargeable magnesium battery (rMB) has received increased attention as a promising alternative to ...
Birnessite δ-MnO2, with its low cost, high theoretical capacity, and stable cycling performance in a...
Birnessite δ-MnO2, with its low cost, high theoretical capacity, and stable cycling performance in a...
The use of oxide cathodes in Mg batteries would unlock a potential energy storage system that delive...
The use of oxide cathodes in Mg batteries would unlock a potential energy storage system that delive...
Layered manganese oxides adopting pre-accommodated cations have drawn tremendous interest for the ap...
Hydrated materials contain crystal water within their crystal frameworks and can exhibit extraordina...
Commercial LiMn2O4 powder was used as the base material for probing magnesiation, cycling behavior, ...
Two-dimensional birnessite has attracted attention for electrochemical energy storage because of the...
Layered transition metal oxides are considered promising cathodes for sodium ion batteries (SIBs) du...
Aqueous zinc (Zn)-ion batteries are gaining considerable attention as grid-scale energy storage syst...
Magnesium batteries are an energy storage system that potentially offers high energy density, but de...
It is well known that many layered transition metal oxides can transform into a spinel structure upo...
Layered transition metal oxides are considered promising cathodes for sodium ion batteries (SIBs) du...
Considering the improved safety, reduced cost, and high volumetric energy density associated with Mg...
Rechargeable magnesium battery (rMB) has received increased attention as a promising alternative to ...
Birnessite δ-MnO2, with its low cost, high theoretical capacity, and stable cycling performance in a...
Birnessite δ-MnO2, with its low cost, high theoretical capacity, and stable cycling performance in a...
The use of oxide cathodes in Mg batteries would unlock a potential energy storage system that delive...
The use of oxide cathodes in Mg batteries would unlock a potential energy storage system that delive...
Layered manganese oxides adopting pre-accommodated cations have drawn tremendous interest for the ap...
Hydrated materials contain crystal water within their crystal frameworks and can exhibit extraordina...
Commercial LiMn2O4 powder was used as the base material for probing magnesiation, cycling behavior, ...
Two-dimensional birnessite has attracted attention for electrochemical energy storage because of the...