The re-emergence of sodium ion batteries: testing, processing, and manufacturability

Samuel Roberts, Emma Kendrick WMG, University of Warwick, Coventry, UKAbstract: With the re-emergence of sodium ion batteries (NIBs), we discuss the reasons for the recent interests in this technology and discuss the synergies between lithium ion battery (LIB) and NIB technologies and the potential...

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Main Authors: Roberts S, Kendrick E
Format: Article
Language:English
Published: Dove Medical Press 2018-06-01
Series:Nanotechnology, Science and Applications
Subjects:
NIB
Online Access:https://www.dovepress.com/the-re-emergence-of-sodium-ion-batteries-testing-processing-and-manufa-peer-reviewed-article-NSA
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spelling doaj-7303cc2126644472bb743ec24d4cd3cc2020-11-24T23:57:59ZengDove Medical PressNanotechnology, Science and Applications1177-89032018-06-01Volume 11233338637The re-emergence of sodium ion batteries: testing, processing, and manufacturabilityRoberts SKendrick ESamuel Roberts, Emma Kendrick WMG, University of Warwick, Coventry, UKAbstract: With the re-emergence of sodium ion batteries (NIBs), we discuss the reasons for the recent interests in this technology and discuss the synergies between lithium ion battery (LIB) and NIB technologies and the potential for NIB as a “drop-in” technology for LIB manufacturing. The electrochemical testing of sodium materials in sodium metal anode arrangements is reviewed. The performance, stability, and polarization of the sodium in these test cells lead to alternative testing in three-electrode and alternative anode cell configurations. NIB manufacturability is also discussed, together with the impact that the material stability has upon the electrodes and coating. Finally, full-cell NIB technologies are reviewed, and literature proof-of-concept cells give an idea of some of the key differences in the testing protocols of these batteries. For more commercially relevant formats, safety, passive voltage control through cell balancing and cell formation aspects are discussed.Keywords: sodium ion battery, NIB, cell manufacturing, electrode processing, Na ion, cell testing, anode, cathode, full cellshttps://www.dovepress.com/the-re-emergence-of-sodium-ion-batteries-testing-processing-and-manufa-peer-reviewed-article-NSASodium ion BatteryNIBCell manufacturingelectrode processingNa-ion
collection DOAJ
language English
format Article
sources DOAJ
author Roberts S
Kendrick E
spellingShingle Roberts S
Kendrick E
The re-emergence of sodium ion batteries: testing, processing, and manufacturability
Nanotechnology, Science and Applications
Sodium ion Battery
NIB
Cell manufacturing
electrode processing
Na-ion
author_facet Roberts S
Kendrick E
author_sort Roberts S
title The re-emergence of sodium ion batteries: testing, processing, and manufacturability
title_short The re-emergence of sodium ion batteries: testing, processing, and manufacturability
title_full The re-emergence of sodium ion batteries: testing, processing, and manufacturability
title_fullStr The re-emergence of sodium ion batteries: testing, processing, and manufacturability
title_full_unstemmed The re-emergence of sodium ion batteries: testing, processing, and manufacturability
title_sort re-emergence of sodium ion batteries: testing, processing, and manufacturability
publisher Dove Medical Press
series Nanotechnology, Science and Applications
issn 1177-8903
publishDate 2018-06-01
description Samuel Roberts, Emma Kendrick WMG, University of Warwick, Coventry, UKAbstract: With the re-emergence of sodium ion batteries (NIBs), we discuss the reasons for the recent interests in this technology and discuss the synergies between lithium ion battery (LIB) and NIB technologies and the potential for NIB as a “drop-in” technology for LIB manufacturing. The electrochemical testing of sodium materials in sodium metal anode arrangements is reviewed. The performance, stability, and polarization of the sodium in these test cells lead to alternative testing in three-electrode and alternative anode cell configurations. NIB manufacturability is also discussed, together with the impact that the material stability has upon the electrodes and coating. Finally, full-cell NIB technologies are reviewed, and literature proof-of-concept cells give an idea of some of the key differences in the testing protocols of these batteries. For more commercially relevant formats, safety, passive voltage control through cell balancing and cell formation aspects are discussed.Keywords: sodium ion battery, NIB, cell manufacturing, electrode processing, Na ion, cell testing, anode, cathode, full cells
topic Sodium ion Battery
NIB
Cell manufacturing
electrode processing
Na-ion
url https://www.dovepress.com/the-re-emergence-of-sodium-ion-batteries-testing-processing-and-manufa-peer-reviewed-article-NSA
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