Sodium-metal chloride batteries are considered a sustainable and safe alternative to lithium-ion batteries for large-scale stationary electricity storage, but exhibit disadvantages in rate capability. Several studies identify metal-ion migration through the metal chloride conversion layer on the positive electrode as the rate-limiting step, limiting charge and discharge rates in sodium-metal chloride batteries. Here the authors present electrochemical nickel and iron chlorination with planar model electrodes in molten sodium tetrachloroaluminate electrolyte at 300 degrees C. It is discovered that, instead of metal-ion migration through the metal chloride conversion layer, it is metal-ion diffusion in sodium tetrachloroaluminate which limits...
Sodium-based batteries are very promising for large-scale applications in near future, thanks to the...
Although the sodium-nickel chloride cell couple has a high voltage (2.59 V) and a high specific ener...
There are several routes available for improving the energy density of lithium-based batteries. One ...
The high-performance sodium metal chloride battery has garnered significant interest in the past dec...
The response to open-circuit interrupts of porous mixed iron-nickel cathodes operating in NaCl-buffe...
Iron, copper, and nickel electrodes were examined as possible metal/metal(II) chloride cathodes for ...
Corrosion mitigation of nickel alloy metals in molten chloride salts at 800C is desired for next-gen...
Room temperature molten salts have been proposed for use as electrolytes in high energy density batt...
Na metal anode receives increasing attention as a low-cost alternative to Li metal anode for the app...
The search for alternatives to traditional Li-ion batteries is a continuous quest for the chemistry ...
Rechargeable sodium metal batteries have drawn immense interest as next-generation batteries, owing ...
Medium-temperature liquid sodium (ZEBRA) battery cells, employing solid transition metal dichloride ...
Room temperature molten salts consisting of 1,2-dimethyl-3-propylimidazolium chloride and aluminum c...
There is a need for higher capacity batteries to address the increasing energy demand for electric v...
Liquid metal batteries (LMBs) are characterized by an easy scalability and long life, which makes th...
Sodium-based batteries are very promising for large-scale applications in near future, thanks to the...
Although the sodium-nickel chloride cell couple has a high voltage (2.59 V) and a high specific ener...
There are several routes available for improving the energy density of lithium-based batteries. One ...
The high-performance sodium metal chloride battery has garnered significant interest in the past dec...
The response to open-circuit interrupts of porous mixed iron-nickel cathodes operating in NaCl-buffe...
Iron, copper, and nickel electrodes were examined as possible metal/metal(II) chloride cathodes for ...
Corrosion mitigation of nickel alloy metals in molten chloride salts at 800C is desired for next-gen...
Room temperature molten salts have been proposed for use as electrolytes in high energy density batt...
Na metal anode receives increasing attention as a low-cost alternative to Li metal anode for the app...
The search for alternatives to traditional Li-ion batteries is a continuous quest for the chemistry ...
Rechargeable sodium metal batteries have drawn immense interest as next-generation batteries, owing ...
Medium-temperature liquid sodium (ZEBRA) battery cells, employing solid transition metal dichloride ...
Room temperature molten salts consisting of 1,2-dimethyl-3-propylimidazolium chloride and aluminum c...
There is a need for higher capacity batteries to address the increasing energy demand for electric v...
Liquid metal batteries (LMBs) are characterized by an easy scalability and long life, which makes th...
Sodium-based batteries are very promising for large-scale applications in near future, thanks to the...
Although the sodium-nickel chloride cell couple has a high voltage (2.59 V) and a high specific ener...
There are several routes available for improving the energy density of lithium-based batteries. One ...