In the recent decade, the community emphasizes the crucial need for the improvement of battery safety and safety remains a critical barrier for this technology. Despite safer battery materials, battery thermal management could be a key to safer post Lithium technology. In that respect, sodium ion based batteries were studied using different electrolyte routes. Thermo-physical and electrochemical analyses depicted the performance of the battery material and the coin cell characteristics. The safety related parameters including the heat generation during charging-discharging and thermal abuse test have been executed by the means of sophisticated calorimetry instruments. Quantitative measurement of the thermal data was performed, and out-gasi...
Liquid metal batteries (LMBs) are characterized by an easy scalability and long life, which makes th...
Na-based storage systems working at room-temperature have recently gained the interest of the resear...
© 2018, The Author(s). High-temperature sodium–sulfur batteries operating at 300–350 °C have been co...
The sodium ion cells were assembled by using Na$_{0.5}$3MnO$_{2}$ as cathode material, pure sodium m...
For sodium (Na)‐rechargeable batteries to compete, and go beyond the currently prevailing Li‐ion tec...
Development of secondary batteries based on abundant and inexpensive elements are vital. Amongvariou...
The development of low-cost energy storage schemes is imminent in light of the ever-growing demand o...
Sodium ion batteries have been developed using ionic liquids as electrolytes. Sodium is superior to ...
Because of the development of renewable energy and electric vehicles, the need for a large scale ene...
International audienceNa-ion batteries are presented as a complementary technology to Li-ion batteri...
For sodium (Na)-rechargeable batteries to compete, and go beyond the currently prevailing Li-ion tec...
Battery cell instrumentation (e.g., temperature, voltage and current sensing) is vital to understand...
Rechargeable sodium metal batteries have drawn immense interest as next-generation batteries, owing ...
Research devoted to room temperature lithium–sulfur (Li/S8) and lithium–oxygen (Li/O2) batteries has...
Nonaqueous sodium-based batteries are ideal candidates for the next generation of electrochemical en...
Liquid metal batteries (LMBs) are characterized by an easy scalability and long life, which makes th...
Na-based storage systems working at room-temperature have recently gained the interest of the resear...
© 2018, The Author(s). High-temperature sodium–sulfur batteries operating at 300–350 °C have been co...
The sodium ion cells were assembled by using Na$_{0.5}$3MnO$_{2}$ as cathode material, pure sodium m...
For sodium (Na)‐rechargeable batteries to compete, and go beyond the currently prevailing Li‐ion tec...
Development of secondary batteries based on abundant and inexpensive elements are vital. Amongvariou...
The development of low-cost energy storage schemes is imminent in light of the ever-growing demand o...
Sodium ion batteries have been developed using ionic liquids as electrolytes. Sodium is superior to ...
Because of the development of renewable energy and electric vehicles, the need for a large scale ene...
International audienceNa-ion batteries are presented as a complementary technology to Li-ion batteri...
For sodium (Na)-rechargeable batteries to compete, and go beyond the currently prevailing Li-ion tec...
Battery cell instrumentation (e.g., temperature, voltage and current sensing) is vital to understand...
Rechargeable sodium metal batteries have drawn immense interest as next-generation batteries, owing ...
Research devoted to room temperature lithium–sulfur (Li/S8) and lithium–oxygen (Li/O2) batteries has...
Nonaqueous sodium-based batteries are ideal candidates for the next generation of electrochemical en...
Liquid metal batteries (LMBs) are characterized by an easy scalability and long life, which makes th...
Na-based storage systems working at room-temperature have recently gained the interest of the resear...
© 2018, The Author(s). High-temperature sodium–sulfur batteries operating at 300–350 °C have been co...