Electrochemical energy storage technology must continue to improve in order to meet increasing demand across sectors, while balancing performance with cost and resource constraints. For large-scale stationary applications such as grid storage of renewable energy, Na- and K-ion batteries have received attention as potential alternatives to Li-ion batteries mainly due to the far greater abundance of those elements. Research efforts for these "beyond Li-ion" technologies include developing robust electrode materials that can undergo many cycles without degrading. One promising class of candidate materials are layered oxide intercalation compounds, which have been widely adopted in positive electrodes for commercial Li-ion batteries. However, w...
Ion-exchange reactions are commonly used to develop novel metastable electrode materials for alkali-...
The alkali-ion batteries are the key to unlock the bottleneck of the renewable energy storage and pa...
Sodium chromium oxide, NaCrO$_2$, has received significant attention as positive electrode (cathode)...
Electrochemical energy storage technology must continue to improve in order to meet increasing deman...
Current state-of-the-art Na-ion battery cathodes are selected from the broad chemical space of layer...
The performance of Na-ion batteries is sensitive to the nature of cation ordering and phase transfor...
Renewable energy sources are generally abundant but intermittent, with peak production and peak dema...
Li- and Na-ion batteries are effective energy storage technologies. Nonetheless, currently used orga...
Abstract High performance batteries based on the movement of Li ions in Li x CoO2 have made possible...
The recent surge of interest in K-ion batteries necessitates a fundamental understanding of phase st...
To understand the difference in reversible energy storage capacity between the O3-type layered Na an...
Intercalation of ions in electrode materials has been explored to improve the rate capability in lit...
Layered NaxMeO2 (Me=transition metal) oxides, the most common electrode materials for sodium-ion bat...
Many layered oxide and sulfide intercalation compounds used in secondary batteries undergo stacking-...
The development of high-performance sodium (Na) ion batteries requires improved electrode materials....
Ion-exchange reactions are commonly used to develop novel metastable electrode materials for alkali-...
The alkali-ion batteries are the key to unlock the bottleneck of the renewable energy storage and pa...
Sodium chromium oxide, NaCrO$_2$, has received significant attention as positive electrode (cathode)...
Electrochemical energy storage technology must continue to improve in order to meet increasing deman...
Current state-of-the-art Na-ion battery cathodes are selected from the broad chemical space of layer...
The performance of Na-ion batteries is sensitive to the nature of cation ordering and phase transfor...
Renewable energy sources are generally abundant but intermittent, with peak production and peak dema...
Li- and Na-ion batteries are effective energy storage technologies. Nonetheless, currently used orga...
Abstract High performance batteries based on the movement of Li ions in Li x CoO2 have made possible...
The recent surge of interest in K-ion batteries necessitates a fundamental understanding of phase st...
To understand the difference in reversible energy storage capacity between the O3-type layered Na an...
Intercalation of ions in electrode materials has been explored to improve the rate capability in lit...
Layered NaxMeO2 (Me=transition metal) oxides, the most common electrode materials for sodium-ion bat...
Many layered oxide and sulfide intercalation compounds used in secondary batteries undergo stacking-...
The development of high-performance sodium (Na) ion batteries requires improved electrode materials....
Ion-exchange reactions are commonly used to develop novel metastable electrode materials for alkali-...
The alkali-ion batteries are the key to unlock the bottleneck of the renewable energy storage and pa...
Sodium chromium oxide, NaCrO$_2$, has received significant attention as positive electrode (cathode)...