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Ampcera announces a low-cost and scalable solid electrolyte technology for solid-state batteries

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Silicon-Valley-based Ampcera announced a low-cost flexible solid electrolyte (SE) membrane technology for solid-state batteries (SSBs).

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ARPA-E launches $45M funding for advanced batteries for electric vehicles; EVs4ALL

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The US Department of Energy (DOE) announced up to $45 million in funding ( DE-FOA-0002760 ) to support the domestic development of advanced batteries for electric vehicles. This will decrease the amount of time drivers spend at charging stations to as low as five minutes, while ensuring increased costs savings during each charge.

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Umicore starts industrialization of HLM manganese-rich battery materials technology for EVs

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Umicore is starting the industrialization of its manganese-rich HLM (high lithium, manganese) cathode active materials (CAM) technology and is targeting commercial production and use in electric vehicles (EVs) in 2026. —Ralph Kiessling, Executive Vice President Energy & Surface Technologies at Umicore

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Lithium-ion battery recycler ABTC expands operations and capacity with newly purchased facility

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The demand for domestically produced and sustainably sourced battery metals has grown at a near insatiable rate over recent years, as the domestic manufacturing capacity of lithium-ion batteries has grown exponentially from less than 50 GWh/year to now more than 700 GWh/year of operational and announced capacity.

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IDTechEx calculates ~31 GWh of electric vehicle markets beyond cars in 2021

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IDTechEx’s latest master electric vehicle report “ Electric Vehicles: Land, Sea & Air 2022-2042 ” finds 35.7 million electric vehicles (EV) were sold in 2021 and predicts this will rise to more than 74 million by 2030. Source: IDTechEx - “Electric Vehicles: Land, Sea & Air 2022-2042”.

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New long-duration, extended capacity Na-Al battery design for grid storage

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h is achieved with an estimated raw active materials cost of $7.02 These metrics show the great potential of this unlocked chloroaluminate battery for future low-cost, long-duration electrochemical energy storage. By significantly increasing the cathode thickness and therefore accessible areal capacity up to 131.7 Weller et al.

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GWU team develops low-cost, high-yield one-pot synthesis of carbon nanofibers from atmospheric CO2

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A team led by Dr. Stuart Licht at The George Washington University in Washington, DC has developed a low-cost, high-yield and scalable process for the electrolytic conversion of atmospheric CO 2 dissolved in molten carbonates into carbon nanofibers (CNFs.) Now, the team, which includes postdoctoral fellow Jiawen Ren, Ph.D.,

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