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Faradion and Phillips 66 to develop lower cost and higher-performing sodium-ion battery materials

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UK-based Faradion, a developer of sodium-ion battery technology ( earlier post ), and Phillips 66 have launched a new technical collaboration to develop lower-cost and higher-performing anode materials for sodium-ion batteries. Earlier post.).

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Project CaSino investigating calcium-sulfur batteries

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The joint European project “CaSino” is investigating the potential of the calcium sulfur (Ca-S) battery as an alternative to lithium-ion batteries. Lithium is a stellar element for an electrochemical cell in many ways—it combines a high power storage capacity and cell voltage with fast ion migration.

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ELIIY Begins Mass Production of Li-ion Batteries

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Keio University spin-out ELIIY Power Co., has begun operations at its new Li-ion battery manufacturing plant in Kawasaki. ELIIY plans to market stationary power systems for commercial and residential applications. Earlier post.).

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Expanded graphite as a superior anode for sodium-ion batteries

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Researchers at the University of Maryland, with colleagues at the University of Illinois at Chicago, report on a new method for expanding graphite for use as a superior anode for sodium-ion batteries in a paper in Nature Communications. to enlarge the interlayer lattice distance to accomodate the larger sodium ions.

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Kentucky-Argonne Partnership to Help Build US Advanced Battery Industry

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The Commonwealth of Kentucky, the University of Kentucky (UK) and University of Louisville (U of L) are partnering with the US Department of Energy’s (DOE) Argonne National Laboratory to establish a national Battery Manufacturing R&D Center to help develop and deploy a domestic supply of advanced battery technologies for vehicle applications.

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New Li-S battery shows cycle performance comparable to that of Li-ion batteries along with more than double the energy density

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A team of researchers in South Korea and Italy has demonstrated a highly reliable lithium–sulfur battery showing cycle performance comparable to that of commercially available lithium-ion batteries while offering more than double the energy density. The full lithium-ion sulfur cell presented in the study delivers a capacity of

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DOE Awarding $620M for Smart Grid Demonstration and Energy Storage Projects

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DOE funding $75,161,246, total project value with cost share $150,322,492). Los Angeles Department of Water and Power. In partnership with a consortium of local research institutions, this project deploy smart grid systems at partners’ university campus properties and technology transfer laboratories. Pecan Street Project (TX).