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Unclassified · 4 Aug 2026 · 20:50 CEST

Solving the solvent problem

MIT News · 4 Aug 2026 · 20:50 CESTRead original at MIT News ↗
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Solving the solvent problem

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Lithium-ion batteries are the leading choice in today’s electric vehicle and battery energy storage system industries, but they contain a number of critical minerals — including lithium, cobalt, nickel, and graphite — that are considered essential for economic and national security reasons, and therefore vulnerable to supply chain disruptions. As renewable energy, electrified infrastructure, and high-power digital technologies continue to grow, there is an increasing need for energy storage systems that are low-cost, resource-abundant, and capable of fast charging and discharging.

That need, among other reasons, has motivated a group of researchers — based at MIT and led by Ju Li, the Carl Richard Soderberg Professor of Power Engineering in the departments of Nuclear Science and Engineering (NSE) and Materials Science and Engineering — to develop complementary energy storage solutions. The team is looking, in particular, at sodium-metal batteries, which offer several attractive features.

Sodium is about 1,000 times more abundant than lithium and, pound for pound, about one-hundredth the cost. A key challenge, however, is that sodium metal is highly reactive, making it difficult for these batteries to achieve…

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MIT News · 4 Aug 2026 · 20:50 CEST

Open the original at MIT News ↗