Structural, computational and electrochemical investigations are combined to study the intercalation properties of tunnel-type Na0.44MnO2 and Cu-substituted Na0.44MnO2
We have presented a detailed investigation of the effects of Mg substitution on the structure, elect...
Na-ion batteries are receiving significant research interest as a lower cost alternative to conventi...
We have presented a detailed investigation of the effects of Mg substitution on the structure, elect...
Na0.44MnO2 (NMO) with a tunnel-type structure is a reference cathode material for rechargeable Na-io...
AbstractThe search for highly performing cathode materials for sodium batteries is a fascinating top...
We have presented a detailed investigation of the effects of Mg substitution on the structure, elect...
Sodium-ion batteries (SIBs) can develop cost-effective and safe energy storage technology for substa...
Developing cost-effective and high performance sodium-ion batteries (SIBs) relies mostly on advanced...
Na0.67MnO2 (NMO) stands out among the layered cathode materials used for sodium batteries due to its...
The cost of batteries is becoming as important as the energy density for large-scale electrochemical...
Sodium-ion batteries (SIBs) can develop cost-effective and safe energy storage technology for substa...
We have presented a detailed investigation of the effects of Mg substitution on the structure, elect...
Funding information: This work was supported by the Faraday Institution (Grant No. FIRG018). The aut...
We report excellent cycling performance for P2–Na<sub>0.6</sub>Li<sub>0.2</sub>Mn<sub>0.8</sub>O<sub...
We report a 3.8 V manganese-based mixed-phosphate cathode material for applications in sodium rechar...
We have presented a detailed investigation of the effects of Mg substitution on the structure, elect...
Na-ion batteries are receiving significant research interest as a lower cost alternative to conventi...
We have presented a detailed investigation of the effects of Mg substitution on the structure, elect...
Na0.44MnO2 (NMO) with a tunnel-type structure is a reference cathode material for rechargeable Na-io...
AbstractThe search for highly performing cathode materials for sodium batteries is a fascinating top...
We have presented a detailed investigation of the effects of Mg substitution on the structure, elect...
Sodium-ion batteries (SIBs) can develop cost-effective and safe energy storage technology for substa...
Developing cost-effective and high performance sodium-ion batteries (SIBs) relies mostly on advanced...
Na0.67MnO2 (NMO) stands out among the layered cathode materials used for sodium batteries due to its...
The cost of batteries is becoming as important as the energy density for large-scale electrochemical...
Sodium-ion batteries (SIBs) can develop cost-effective and safe energy storage technology for substa...
We have presented a detailed investigation of the effects of Mg substitution on the structure, elect...
Funding information: This work was supported by the Faraday Institution (Grant No. FIRG018). The aut...
We report excellent cycling performance for P2–Na<sub>0.6</sub>Li<sub>0.2</sub>Mn<sub>0.8</sub>O<sub...
We report a 3.8 V manganese-based mixed-phosphate cathode material for applications in sodium rechar...
We have presented a detailed investigation of the effects of Mg substitution on the structure, elect...
Na-ion batteries are receiving significant research interest as a lower cost alternative to conventi...
We have presented a detailed investigation of the effects of Mg substitution on the structure, elect...