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Cornell team develops aluminum-anode batteries with up to 10,000 cycles

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Friend Family Distinguished Professor of Engineering, have been exploring the use of low-cost materials to create rechargeable batteries that will make energy storage more affordable. Now, they have employed a different approach for incorporating aluminum, resulting in rechargeable batteries that offer up to 10,000 error-free cycles.

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New Lithium rechargeable semi-solid flow cell offers energy densities an order of magnitude greater than previous flow batteries; possible applications in transportation and grid-scale storage

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For large-scale applications, the SSFC design should also provide lower materials and manufacturing cost than conventional lithium-ion battery technology. 2011), Semi-Solid Lithium Rechargeable Flow Battery. Source: Duduta et al. Click to enlarge. —Duduta et al. Duduta, M., Limthongkul, P., Brunini, V. Craig Carter, W.

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This lithium-free battery startup just raised $78M in Series C funding

Baua Electric

Photo: Alsym Energy Boston-based Alsym Energy, which is developing a nonflammable rechargeable battery that’s cobalt and lithium-free, has announced a $78 million funding round. Alsym Energy, which was founded in April 2015, has developed a non-flammable, high-performance rechargeable battery chemistry that’s lithium- and cobalt-free.

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MIT team reexamines rates of Li-ion cost decline

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The cost of the rechargeable lithium-ion batteries used for phones, laptops, and cars has fallen significantly over the last three decades, and has been a major driver of the rapid growth of those technologies.

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Researchers propose new aluminum–sulfur battery with molten-salt electrolyte; low-cost, rechargeable, fire-resistant, recyclable

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An international team of researchers led by Quanguan Pang at Peking University and Donald Sadoway at MIT reports a bidirectional, rapidly charging aluminum–chalcogen battery operating with a molten-salt electrolyte composed of NaCl–KCl–AlCl 3. 2022) “Fast-charging aluminium–chalcogen batteries resistant to dendritic shorting.”

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Remembering Lithium-Ion Battery Pioneer John Goodenough

Cars That Think

Goodenough was awarded the 2012 IEEE Medal for Environmental and Safety Technologies for discoveries that “paved the way for development of the rechargeable lithium-ion battery technology.” in 1952 in solid-state physics, he joined MIT’s Lincoln Laboratory , in Lexington, Mass., His ability to cross disciplines started at MIT. “At

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24M and partners awarded $3.5M from ARPA-E to develop ultra-high-energy density batteries with new lithium-metal anodes

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The semi-solid thick electrode is a material science innovation originating in Dr. Yet-Ming Chiang’s lab at MIT. (Dr. In addition to providing high-flux and ion-selective transport, Sepion’s polymer membranes are processable in large area formats at a fraction of the cost of ceramics. Click to enlarge.

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