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SolidEnergy targeting rechargeable Li-metal smartphone battery in 2016, EV battery with 2x range in 2017

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SolidEnergy , an MIT spin-out commercializing solid electrolyte technology enabling the use of lithium metal anodes for high energy density rechargeable batteries ( earlier post ), says that in 2016, it and its battery manufacturing partners will release a 2 Ah commercial battery for the smartphone and wearable market. —Sadoway (2004).

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BMW’s GM of battery cell technology joins Wildcat Discovery’s board

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Since 2004, Dr. Lamp has been the leader of the “Technology and Concepts Electric Energy Storage” group and, since 2012, of the “Battery Cell Technology” department at BMW.

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New one-pot method for recharging ammonia borane opens up potential for viable on-board hydrogen storage

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Los Alamos National Laboratory (LANL) and the University of Alabama (UA) researchers working within the US Department of Energy’s (DOE) Chemical Hydrogen Storage Center of Excellence have demonstrated a new single-stage method for recharging the hydrogen storage compound ammonia borane (H 3 N-BH 3 , AB). Sutton, Anthony K. Burrell, David A.

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Pellion Technologies leveraging high throughput computational materials design to make progress on Mg-ion rechargeable batteries

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Persson is also a co-founder of Pellion Technologies—an MIT spin-off co-founded by Dr. Gerbrand Ceder, funded by Vinod Khosla, and recipient of an ARPA-E grant ( earlier post ) that is developing a magnesium-ion (Mg-ion) rechargeable battery. Aurbach (2010) On the Way to Rechargeable Mg Batteries: The Challenge of New Cathode Materials.

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Mie University team working on aqueous li-air batteries; 300 Wh/kg

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Researchers at Mie University in Japan have developed a new protected lithium electrode for aqueous lithium/air rechargeable batteries. Lithium/air rechargeable batteries are attracting great attention, because of a possibility to achieve energy density which is comparable to combustion engines.

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Rio Tinto to invest ~$200M to progress the Jadar lithium project to feasibility study stage; jaderite

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The unique mineral— jadarite —was discovered by Rio Tinto geologists in 2004 near the city of Loznica in Western Serbia. This plant could potentially produce 10 tonnes per year of lithium-carbonate needed in rechargeable batteries for electric vehicles and consumer electronics.

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Japan researchers propose trilithium niobate as high-energy cathode for Li-ion batteries

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A team of researchers in Japan, including colleagues from the R&D Center at batter-maker GS Yuasa, are exploring Li 3 NbO 4 -based (trilithium niobate) materials as new and promising electrode materials for high-energy rechargeable lithium batteries. A paper on their work is published in Proceedings of the National Academy of Sciences (PNAS).

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