Sodium and Sodium‐Ion Batteries: 50 Years of Research

Натриевые и натрий-ионные аккумуляторы: 50 лет исследований
Claude Delmas
2018-02-19

beta-aluminaintercalation electrodessodium-ion batteriessodium–nickel chloride batteriessodium–sulfur batteries
Abstract This paper gives an overview of the research carried out on sodium batteries in the last 50 years. The discovery of the very high Na + ion conductivity in β‐Al 2 O 3 opened the way to high‐energy batteries (sodium/sulfur and sodium/NiCl 2 ) for load leveling and electrical vehicles. Then, the liquid electrolyte batteries were considered with intercalation‐based electrodes and lithium and sodium as mobile ions. When Sony proposed the lithium‐ion batteries, most research moved to lithium systems, exhibiting a higher energy density. These are now currently used in electronic devices, hybrid electrical vehicle (HEV) and electrical vehicle (EV). The development of renewable energies, which have an intermittent character, requires very large batteries for frequency regulation and peak production shift. For these stationary applications the most important parameters are the lifetime, the power, the price, and the material availability. Since sodium ion batteries are able to satisfy these criteria, these new material families now concern a large part of the scientific community. This article gives a general introduction and an overview of the research carried out on the materials that are presented in detail, in the articles within this special issue on sodium batteries.
1
For stationary storage, sodium-ion batteries are attractive because they can address lifetime, power, cost, and material-availability requirements.
2
High Na+ ionic conductivity in β-Al2O3 enabled high-energy sodium/sulfur and sodium/NiCl2 batteries for load leveling and electric vehicles.
3
Lithium-ion batteries became dominant in electronic devices, hybrid electric vehicles, and electric vehicles after their commercialization by Sony.
4
Research subsequently shifted toward liquid-electrolyte intercalation batteries using lithium and sodium ions, with lithium systems achieving higher energy density.
5
The growth of intermittent renewable energy creates demand for large stationary batteries supporting frequency regulation and peak-production shifting.

sodium and sodium-ion batteries

the development, materials, applications, and performance requirements of sodium-based batteries over 50 years of research

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2018-02-19
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Claude Delmas
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