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Boffins interrogate sodium ion battery stability mystery

(2023/05/15)


The world is inching closer to replacing lithium in batteries with sodium, and Cornell University researchers think they're would a way to help address stability problems in the nascent energy storage technology.

By shooting a highly synchronized X-ray beam at a sodium ion battery in the process of charging, researchers said they were able to spot transient crystal defects that only occur when the battery was in use and which vanish when at rest, the team said in its [1]paper .

"If we looked at the battery before and after the first charge-discharge cycle, we would see no defects. But during the operation, we see how the defects form and self-heal, leaving detectable 'scars' behind," [2]said Andrej Singer, lead researcher and faculty fellow at Cornell's Department of Material Science and Engineering.

[3]

Sodium ion batteries have been at the cutting edge of battery research in recent years, but they [4]degrade quickly when charged and discharged and such short lifespans make them far less practical as a replacement for long-lasting lithium ion batteries.

[5]

[6]

While this discovery could help future researchers better understand how the cathodes in sodium ion batteries function, the team said they still don't quite understand the mechanism behind their formation. They were, however, able to use metallurgical modeling to predict the movement of the transient defects across the cathode.

Armed with that knowledge, the Cornell/University of California, San Diego/University of Chicago/Argonne National Laboratory team now plans to study how the defects interact with the process of ionic diffusion as the battery charges and discharges. Singer said the defects suggest that particle shape plays a role in that interaction process, something he and his team want to explore further.

[7]

"For centuries, blacksmiths used defect engineering in metals to create stronger and more durable materials without even realizing it," Singer said, adding that he hopes using a defect-engineering approach to sodium ion cathodes could help solve the stability problem.

Sodium ion batteries are having a moment

Lots of different industries are including sustainability in their future product roadmaps, and batteries are no different. Lithium is a far rarer and much more expensive material than sodium, which is plentiful around the world, chemically similar to lithium, and relatively inexpensive.

Chinese battery makers BYD and CATL have both been actively working on sodium ion batteries that avoid degradation issues and it was recently reported that [8]both firms plan to field mixed Lithium-Sodium ion batteries in Chinese-made electric vehicles later this year.

The US has already become a [9]laggard in other forms of battery technology, and by all accounts China is ready to corner the market on sodium ion batteries once they reach a production-ready state.

[10]Chinese company claims it's built batteries so dense they can power electric airplanes

[11]Bill Gates' nuclear power plant stalled by Russian fuel holdup

[12]Paper batteries on the cards to power IoT and smart labels

[13]UK urged to choo-choo-choose hydrogen-powered trains in pursuit of carbon-neutral economic growth

[14]According to The New York Times, 16 out of 20 sodium battery factories currently planned or under construction are located in China; two years from now 95 percent of the world's sodium battery manufacturing capacity will belong to China.

Luckily for the US, the largest ever discovered source of industrial sodium, soda ash, is [15]in Wyoming . Natural soda ash is far more sustainable to refine than lithium, but in China, where most sodium ion batteries are likely to be made in the next few years, synthetic soda ash is the dominant form.

Unfortunately, synthetic soda ash is produced using a caustic blend of chemicals and [16]carbon-intense coal-fired heat , meaning China's sodium ion batteries likely won't be as sustainable as the world needs. ®

Get our [17]Tech Resources



[1] https://onlinelibrary.wiley.com/doi/10.1002/aenm.202203654

[2] https://news.cornell.edu/stories/2023/05/x-ray-imaging-captures-fleeting-defects-sodium-ion-batteries

[3] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_specialfeatures/emergingcleanenergytechweek&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=2&c=2ZGJXIhL@5XdpoxNBA6XF-wAAAJM&t=ct%3Dns%26unitnum%3D2%26raptor%3Dcondor%26pos%3Dtop%26test%3D0

[4] https://pubs.acs.org/doi/10.1021/acsenergylett.0c02181

[5] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_specialfeatures/emergingcleanenergytechweek&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=4&c=44ZGJXIhL@5XdpoxNBA6XF-wAAAJM&t=ct%3Dns%26unitnum%3D4%26raptor%3Dfalcon%26pos%3Dmid%26test%3D0

[6] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_specialfeatures/emergingcleanenergytechweek&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=3&c=33ZGJXIhL@5XdpoxNBA6XF-wAAAJM&t=ct%3Dns%26unitnum%3D3%26raptor%3Deagle%26pos%3Dmid%26test%3D0

[7] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_specialfeatures/emergingcleanenergytechweek&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=4&c=44ZGJXIhL@5XdpoxNBA6XF-wAAAJM&t=ct%3Dns%26unitnum%3D4%26raptor%3Dfalcon%26pos%3Dmid%26test%3D0

[8] https://cleantechnica.com/2023/04/22/the-sodium-ion-battery-is-coming-to-production-cars-this-year/

[9] https://www.theregister.com/2022/08/04/doe_battery_tech_china/

[10] https://www.theregister.com/2023/04/20/catl_dense_batteries_for_planes/

[11] https://www.theregister.com/2022/12/16/gates_nuclear_power_russia/

[12] https://www.theregister.com/2022/07/29/paper_batteries_on_the_cards/

[13] https://www.theregister.com/2021/06/24/uk_hydrogen_trains/

[14] https://www.nytimes.com/2023/04/12/business/china-sodium-batteries.html

[15] https://www.etisoda.com/en/what-is-soda-ash/

[16] https://cen.acs.org/business/specialty-chemicals/synthetic-soda-ash-survive/101/i7

[17] https://whitepapers.theregister.com/



Andy the ex-Brit

I think something went wrong in the middle of the first sentence, around "they're would a way."

"The world is inching closer to replacing lithium in batteries with sodium, and Cornell University researchers think they're would a way to help address stability problems in the nascent energy storage technology."

Huh?

HammerOn1024

"... researchers think they're would a way..."

Huh?

Uhm...

HammerOn1024

"Luckily for the US, the largest ever discovered source of industrial sodium, soda ash, is in Wyoming"

Uhm... sodium is literally everywhere; oceans, salt mines, the ground you are standing on, everywhere!

The largest ever discovered source of industrial sodium?

Ian Mason

I think someone failed chemistry at school. Soda ash (sodium carbonate, aka washing soda) is neither here nor there as a source of industrial sodium per se and one deposit in Wyoming is not the world's biggest source of commercial sodium, just possibly of commercial sodium carbonate. Anyone who simply needs sodium starts with a sea or a salt mine, neither of which are in short supply.

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