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Stellantis Ventures invests in Tiamat’s sodium-ion battery technology – Charged EVs

Baua Electric

Stellantis Ventures has made a strategic investment in France-based sodium-ion battery developer Tiamat. Tiamat says its sodium-ion technology is lithium- and cobalt-free and cheaper per kilowatt hour (kWh) when compared with lithium-ion batteries.

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Vanderbilt researchers find iron pyrite quantum dots boost performance of sodium-ion and Li-ion batteries

Green Car Congress

nm, average) of iron pyrite (FeS 2 ) nanoparticles are advantageous to sustain reversible conversion reactions in sodium ion and lithium ion batteries. FeS 2 is particularly attractive for energy storage technology due to its earth abundance, low toxicity, and low raw material cost. … Pint Lab / Vanderbilt) Click to enlarge.

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PATHION develops new LiRAP-based solid-state electrolytes for Li-sulfur and sodium-ion batteries

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The LiRAP solid electrolytes conduct Li + ions well at high voltage and high current, providing much enhanced energy density and power capacity as well as safety. PATHION is working on a derivative for Li-sulfur batteries as well as a derivative that could be applied in a sodium-ion battery. Lithium sulfur.

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Faraday Institution to award up to £55M to five consortia for energy storage research

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The new projects in four focus areas join the existing Faraday Institution research projects that collectively aim to deliver the organisation’s mission to accelerate breakthroughs in energy storage technologies to benefit the UK in the global race to electrification. Next generation sodium ion batteries–NEXGENNA.

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Fraunhofer holding 3rd annual workshop on Li-sulfur batteries in November

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Fraunhofer IWS in Dresden, Germany will hold its 3rd annual workshop on Lithium-sulfur batteries from 12-13 November 2014. As with the prior Lithium-Sulfur Battery Workshops in 2012 and 2013, this year’s symposium will bring together an international audience of scientists and industrial customers.

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Fraunhofer develops new dry-coating process for battery electrodes

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Conventional processes for manufacturing battery electrodes involve mostly toxic solvents and require a lot of space and energy. The Federal Ministry for Economic Affairs and Energy (BMWi) predicts that. However, it is clear that society’s overall energy demand is continuously increasing. © Fraunhofer IWS Dresden.

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

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In their paper on the work published in the journal Joule , the researchers reported that by using a reduced graphene oxide (rGO)/sodium lignosulfonate (SL) composite on the standard polypropylene (PP) separator (rGO@SL/PP), they demonstrated a highly robust Li-S battery with a capacity retention of 74% over 1,000 cycles. … 2018.07.022.

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