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ORNL team develops low-cost scalable method to join materials in solid-state batteries; electrochemical pulse

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Scientists at the Department of Energy’s Oak Ridge National Laboratory have developed a scalable, low-cost method to improve the joining of materials in solid-state batteries, resolving one of the big challenges in the commercial development of safe, long-lived energy storage systems. Credit: Andy Sproles/ORNL, US DOE.

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INL validates 1000 charge-discharge cycles from Zenlabs’ Si anode Li-ion cells; USABC program

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Zenlabs Energy, an advanced lithium-ion cell company, announced that Idaho National Laboratory (INL) has successfully tested more than 1,000 charge-discharge cycles from its high-energy Silicon anode pouch cells. For the last 30 years, the lithium-ion industry has used graphite as the preferred anode material.

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USABC awards $2.4M contract to WPI for development of low-cost/fast-charge batteries for EV applications

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million contract to Worcester Polytechnic Institute (WPI) to lead a program to develop low-cost/fast-charge batteries for electric vehicle (EV) applications. The contract award, which includes a 50% cost share, funds a 36-month project that began earlier this year. —Yan Wang.

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USABC awards $4.8M to Zenlabs Energy to develop low-cost, fast-charge EV batteries

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in Fremont, California for development of low-cost, fast-charge (LC/FC) battery technology for electric vehicles (EVs). The contract award, which includes a 50% cost share, funds a 30-month project that began last month. million technology development contract to Zenlabs Energy Inc.

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Battrion and Jagenberg Group partner to advance Aligned Graphite Technology for fast-charging EV cells

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Swiss battery Technology pioneer Battrion AG has teamed up with German roll-to-roll production specialist Jagenberg Converting Solution GmbH to supply anode pilot and GWh-production lines utilizing Battrion’s Aligned Graphite Technology for the lithium-ion battery industry.

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Tokyo Tech team develops low-cost germanium-free solid electrolyte for Li-ion batteries

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Researchers at Tokyo Institute of Technology have devised a low-cost, scalable approach to developing all-solid-state batteries, improving prospects for scaling up the technology for widespread use in electric vehicles, communications and other industrial applications. Cyclic voltammogram and charge-discharge curves.

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ANL fluorinated cation electrolyte could help enable high-performance, long-lasting Li-metal batteries

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To pre-store fluorine source on positive-charged species, here we show a cation that carries fluorine in its structure is synthesized and its contribution to interphasial chemistry is explored for the very first time. In lithium metal batteries, the electrolyte is a liquid consisting of a lithium-containing salt dissolved in a solvent.