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New Design Could Enable Longer Lasting, More Powerful Lithium-Ion Batteries
https://scitechdaily.com ^ | MARCH 26, 2021 | By DAVID L. CHANDLER, MASSACHUSETTS INSTITUTE OF TECHNOLOGY

Posted on 03/26/2021 8:47:54 AM PDT by Red Badger

Use of a novel electrolyte could allow advanced metal electrodes and higher voltages, boosting capacity and cycle life.

Lithium-ion batteries have made possible the lightweight electronic devices whose portability we now take for granted, as well as the rapid expansion of electric vehicle production. But researchers around the world are continuing to push limits to achieve ever-greater energy densities — the amount of energy that can be stored in a given mass of material — in order to improve the performance of existing devices and potentially enable new applications such as long-range drones and robots.

One promising approach is the use of metal electrodes in place of the conventional graphite, with a higher charging voltage in the cathode. Those efforts have been hampered, however, by a variety of unwanted chemical reactions that take place with the electrolyte that separates the electrodes. Now, a team of researchers at MIT and elsewhere has found a novel electrolyte that overcomes these problems and could enable a significant leap in the power-per-weight of next-generation batteries, without sacrificing the cycle life.

The research is reported in the journal Nature Energy in a paper by MIT professors Ju Li, Yang Shao-Horn, and Jeremiah Johnson; postdoc Weijiang Xue; and 19 others at MIT, two national laboratories, and elsewhere. The researchers say the finding could make it possible for lithium-ion batteries, which now typically can store about 260 watt-hours per kilogram, to store about 420 watt-hours per kilogram. That would translate into longer ranges for electric cars and longer-lasting changes on portable devices.

Novel Electrolyte to Prevent Cracking

X-ray tomography images taken at Brookhaven National Lab show cracking of a particle in one electrode of a battery cell that used a conventional electrolyte (as seen on the left). The researchers found that using a novel electrolyte prevented most of this cracking (right). Credit: Courtesy of the researchers

The basic raw materials for this electrolyte are inexpensive (though one of the intermediate compounds is still costly because it’s in limited use), and the process to make it is simple. So, this advance could be implemented relatively quickly, the researchers say.

The electrolyte itself is not new, explains Johnson, a professor of chemistry. It was developed a few years ago by some members of this research team, but for a different application. It was part of an effort to develop lithium-air batteries, which are seen as the ultimate long-term solution for maximizing battery energy density. But there are many obstacles still facing the development of such batteries, and that technology may still be years away. In the meantime, applying that electrolyte to lithium-ion batteries with metal electrodes turns out to be something that can be achieved much more quickly.

The new application of this electrode material was found “somewhat serendipitously,” after it had initially been developed a few years ago by Shao-Horn, Johnson, and others, in a collaborative venture aimed at lithium-air battery development.

“There’s still really nothing that allows a good rechargeable lithium-air battery,” Johnson says. However, “we designed these organic molecules that we hoped might confer stability, compared to the existing liquid electrolytes that are used.” They developed three different sulfonamide-based formulations, which they found were quite resistant to oxidation and other degradation effects. Then, working with Li’s group, postdoc Xue decided to try this material with more standard cathodes instead.

The type of battery electrode they have now used with this electrolyte, a nickel oxide containing some cobalt and manganese, “is the workhorse of today’s electric vehicle industry,” says Li, who is a professor of nuclear science and engineering and materials science and engineering.

Because the electrode material expands and contracts anisotropically as it gets charged and discharged, this can lead to cracking and a breakdown in performance when used with conventional electrolytes. But in experiments in collaboration with Brookhaven National Laboratory, the researchers found that using the new electrolyte drastically reduced these stress-corrosion cracking degradations.

The problem was that the metal atoms in the alloy tended to dissolve into the liquid electrolyte, losing mass and leading to cracking of the metal. By contrast, the new electrolyte is extremely resistant to such dissolution. Looking at the data from the Brookhaven tests, Li says, it was “sort of shocking to see that, if you just change the electrolyte, then all these cracks are gone.” They found that the morphology of the electrolyte material is much more robust, and the transition metals “just don’t have as much solubility” in these new electrolytes.

That was a surprising combination, he says, because the material still readily allows lithium ions to pass through — the essential mechanism by which batteries get charged and discharged — while blocking the other cations, known as transition metals, from entering. The accumulation of unwanted compounds on the electrode surface after many charging-discharging cycles was reduced more than tenfold compared to the standard electrolyte.

“The electrolyte is chemically resistant against oxidation of high-energy nickel-rich materials, preventing particle fracture and stabilizing the positive electrode during cycling,” says Shao-Horn, a professor of mechanical engineering and materials science and engineering. “The electrolyte also enables stable and reversible stripping and plating of lithium metal, an important step toward enabling rechargeable lithium-metal batteries with energy two times that of the state-the-art lithium-ion batteries. This finding will catalyze further electrolyte search and designs of liquid electrolytes for lithium-metal batteries rivaling those with solid state electrolytes.”

The next step is to scale the production to make it affordable. “We make it in one very easy reaction from readily available commercial starting materials,” Johnson says. Right now, the precursor compound used to synthesize the electrolyte is expensive, but he says, “I think if we can show the world that this is a great electrolyte for consumer electronics, the motivation to further scale up will help to drive the price down.”

Because this is essentially a “drop in” replacement for an existing electrolyte and doesn’t require redesign of the entire battery system, Li says, it could be implemented quickly and could be commercialized within a couple of years. “There’s no expensive elements, it’s just carbon and fluorine. So it’s not limited by resources, it’s just the process,” he says.

Reference: “Ultra-high-voltage Ni-rich layered cathodes in practical Li metal batteries enabled by a sulfonamide-based electrolyte” by Weijiang Xue, Mingjun Huang, Yutao Li, Yun Guang Zhu, Rui Gao, Xianghui Xiao, Wenxu Zhang, Sipei Li, Guiyin Xu, Yang Yu, Peng Li, Jeffrey Lopez, Daiwei Yu, Yanhao Dong, Weiwei Fan, Zhe Shi, Rui Xiong, Cheng-Jun Sun, Inhui Hwang, Wah-Keat Lee, Yang Shao-Horn, Jeremiah A. Johnson and Ju Li, Nature Energy. DOI: 10.1038/s41560-021-00792-y

The research was supported by the U.S. Department of Energy and the National Science Foundation, and made use of facilities at Brookhaven National Laboratory and Argonne National Laboratory.


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To: Squantos

Most great discoveries are serendipitous...................


21 posted on 03/26/2021 9:26:18 AM PDT by Red Badger ("We've always been at war with Climate Change, Winston."..............................)
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To: Red Badger

If you can store energy, be able to recycle, make it affordable, and not kill kids in third world mines, you can end up in the highest tax bracket.


22 posted on 03/26/2021 9:32:01 AM PDT by lurk ( )
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To: Red Badger

This one looks more promising.

It might be about the same overall cost of a gas version, but far less maintenance, and no starting issues after it gets a few years on it.

I seriously consider it if there was a zero turn version.


23 posted on 03/26/2021 9:35:36 AM PDT by Jotmo (Whoever said, "The pen is mightier than the sword." has clearly never been stabbed to death.)
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To: Red Badger

24 posted on 03/26/2021 9:51:53 AM PDT by catnipman (Cat Nipman: Vote Republican in 2012 and only be called racist one more time!)
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To: catnipman

Error 1011 Ray ID: 6361e41139f0cf4c • 2021-03-26 16:52:41 UTC
Access denied
What happened?
The owner of this website (batteryuniversity.com) does not allow hotlinking to that resource (/_img/content/battery-improvements.png).


25 posted on 03/26/2021 9:52:56 AM PDT by Red Badger ("We've always been at war with Climate Change, Winston."..............................)
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To: Red Badger
RB...

We need to chat off line about who's mating up with whom in the Auto/Solid State Battery Manufacturing Space. Exciting stuff, W/Kg numbers that will make E-Flight more of a reality. Check out a Video on Lucid is doing w/ 48v and the mechanics/Geometry of their Battery Pac.

26 posted on 03/26/2021 9:58:47 AM PDT by taildragger ("Do you hear the people Singing? Singing the Songs of Angry Men!")
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To: Red Badger

But the morphology of the electrolyte material is much more robust ....... wondering what the relative equivalence factor is and if it will deflagrate during use in a personal massager ?


27 posted on 03/26/2021 9:59:07 AM PDT by Squantos (Be polite, be professional, but have a plan to kill everyone you meet ...)
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To: taildragger

https://electrek.co/2020/08/26/lucid-range-113-kwh-battery-pack/


28 posted on 03/26/2021 10:09:44 AM PDT by Red Badger ("We've always been at war with Climate Change, Winston."..............................)
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To: taildragger

https://duckduckgo.com/?q=Lucid+Motors&t=brave&iar=news&ia=news


29 posted on 03/26/2021 10:11:09 AM PDT by Red Badger ("We've always been at war with Climate Change, Winston."..............................)
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To: taildragger

Lucid Closes Order Books For The Flagship Air Dream Edition:

https://www.carscoops.com/2021/03/lucid-closes-order-books-for-the-flagship-air-dream-edition/


30 posted on 03/26/2021 10:12:44 AM PDT by Red Badger ("We've always been at war with Climate Change, Winston."..............................)
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To: Red Badger

I believe the anisotropic cathode electrolytic migration will eventually develop electron bifurcation of the charge


31 posted on 03/26/2021 10:12:45 AM PDT by bert ( (KE. NP. N.C. +12) History: Pelosi was pitiful vindictive California crone)
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To: bert

I certainly hope so, Ollie.................


32 posted on 03/26/2021 10:13:45 AM PDT by Red Badger ("We've always been at war with Climate Change, Winston."..............................)
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To: Red Badger

And the expensive precursor chemical is...???


33 posted on 03/26/2021 10:28:07 AM PDT by Paul R. (You know your pullets are dumb if they don't recognize a half Whopper as food!)
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To: Paul R.
They developed three different sulfonamide-based formulations.............
34 posted on 03/26/2021 10:31:08 AM PDT by Red Badger ("We've always been at war with Climate Change, Winston."..............................)
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To: Paul R.

https://en.wikipedia.org/wiki/Sulfonamide


35 posted on 03/26/2021 10:33:02 AM PDT by Red Badger ("We've always been at war with Climate Change, Winston."..............................)
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To: Red Badger

Ah, ok, I didn’t take the sulfonamide-based formulations to be the “intermediate compounds” — I was thinking that term meant something used midway in the mfg. process but not actually present in the final product. But, anyway, thanks.


36 posted on 03/26/2021 11:16:15 AM PDT by Paul R. (You know your pullets are dumb if they don't recognize a half Whopper as food!)
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To: Paul R.

Cheap stuff..................


37 posted on 03/26/2021 11:16:39 AM PDT by Red Badger ("We've always been at war with Climate Change, Winston."..............................)
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To: Red Badger
My diesel car can do 800 highway miles on a full tank.I've done it twice. Once empty I can refill the tank in about 4 minutes at any one of 40,000 stations nationwide.

Why would I *possibly* want to buy an electric vehicle?????

38 posted on 03/26/2021 11:41:07 AM PDT by Gay State Conservative (Trump: "They're After You. I'm Just In The Way")
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To: Gay State Conservative

Because it will be the ONLY car you will be allowed to buy.................


39 posted on 03/26/2021 11:42:34 AM PDT by Red Badger ("We've always been at war with Climate Change, Winston."..............................)
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To: Frohickey

I prefer the disruptor!


40 posted on 03/26/2021 11:53:41 AM PDT by SgtHooper (If you remember the 60's, YOU WEREN'T THERE!)
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