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

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Researchers at Argonne National Laboratory have developed a fluorinated cation electrolyte that could enable high-voltage lithium metal batteries. Fluorides have been identified as a key ingredient in interphases supporting aggressive battery chemistries. An open-access report on their work is published in Nature Communications.

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Researchers develop optimal silicon disulfide production technology for solid-state batteries

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Researchers from the Korea Electrotechnology Research Institute (KERI) and Kumoh National Institute of Technology (KIT), have developed a low-cost production technology for silicon disulfide (SiS 2 ) for solid-state electrolytes (argyrodite-type) that has potential to accelerate the commercialization of all-solid-state batteries (ASSBs).

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DOE awarding $1.6B to 11 battery materials separation and processing projects as part of $2.8B funding

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billion to 21 projects to expand domestic manufacturing of batteries for electric vehicles (EVs) and the electrical grid and for materials and components currently imported from other countries. Li 2 O spodumene concentrate. The US Department of Energy (DOE) is awarding a combined $2.8 Earlier post.) Of that, $1.6

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UT Austin team devises new strategy for safe, low-cost, all-solid-state rechargeable Na or Li batteries suited for EVs

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John Goodenough, known around the world for his pioneering work that led to the invention of the rechargeable lithium-ion battery, have devised a new strategy for a safe, low-cost, all-solid-state rechargeable sodium or lithium battery cell that has the required energy density and cycle life for a battery that powers an all-electric road vehicle.

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New Si-based multicomponent anode exhibits high-performance for Li-ion batteries

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Korea have designed a novel silicon-based multicomponent anode material for high energy density Li-ion batteries. The synthetic process is simple, low-cost, and safe, and can facilitate new methods for developing electrode materials for practical energy storage, the researchers said. Researchers in S.

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CD-adapco completes CAEBAT project for Li-ion battery simulation tools; combined flow, thermal and electrochemical

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CD-adapco announced the successful completion of a project to develop advanced Li-ion battery stimulation tools to enable faster design and development of advanced electric drive vehicle power systems. Linking the flow, thermal and electrochemical simulations into one environment enables producing highly accurate solutions.

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China-US team uses graphene composite separator to suppress polysulfide shuttling in Li-S batteries

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A team of researchers from institutions in China and the US report the design of a negatively charged graphene composite separator for the effective suppression of the polysulfide shuttling effect in Li-sulfur batteries. A recent study demonstrated “charge environment” as an effective way to mitigate the PS shuttling effect.

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