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Electrochemical energy storage startup SPARKZ licenses ORNL cobalt-free battery tech

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Stealth-mode electrochemical energy storage startup SPARKZ Inc. has exclusively licensed five battery technologies from the Department of Energy’s Oak Ridge National Laboratory (ORNL) designed to eliminate the use of cobalt metal in lithium-ion batteries. —SPARKZ Inc. CEO Sanjiv Malhotra. SPARKZ Inc.

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BNEF ups forecast for global investment in stationary energy storage, sees majority of capacity likely to be grid-scale

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Energy storage installations around the world will multiply exponentially, from a modest 9GW/17GWh deployed as of 2018 to 1,095GW/2,850GWh by 2040, according to the latest forecast from research company BloombergNEF (BNEF). Global cumulative energy storage installations. Source: BloombergNEF.

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

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The Faraday Institution will award up to £55 million (US$67 million) to five UK-based consortia to conduct application-inspired research to make step changes in battery chemistries, systems and manufacturing methods. Next generation sodium ion batteries–NEXGENNA. CATMAT will be led by Professor Saiful Islam of the University of Bath.

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Eos Energy launches $500M Project AMAZE with $398.6M conditional loan guarantee from DOE; long-term zinc-based storage

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Eos Energy, a provider of safe, scalable, efficient, and sustainable zinc-powered long-duration stationary energy storage systems, announced Project AMAZE (American Made Zinc Energy), a $500-million planned expansion and a significant milestone to build 8 GWh of clean energy storage production capacity.

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Low-cost 5V dual carbon battery development for EV 

Electric Vehicles India

Low-cost 5V dual carbon battery development for EV . A 5V Dual Carbon Battery that uses self-standing carbon fibre mats as both electrodes such as cathode and anode has been developed by the Electrochemical Energy Storage Lab at the Indian Institute of Technology Hyderabad (IITH).

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Team develops high-capacity Li-ion sulfur battery; no Li-metal anode

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The “classic” high-energy capacity Lithium-sulfur battery is predicated on the use of a sulfur-based cathode and a Lithium-metal anode. ion battery using an enhanced sulfur–carbon composite cathode that exploits graphene carbon with a 3D array (3DG?S) S battery showed a capacity of approximately 460?mAh?g cost and high?energy?storage

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RPI team develops method to use paper-making by-product in lithium-sulfur batteries

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Researchers at Rensselaer Polytechnic Institute (RPI) have now developed a method to use this cheap and abundant waste byproduct to build a components for lithium-sulfur batteries. This material was successfully developed into a cathode for a lithium–sulfur battery, demonstrating cycling stability with a capacity decay rate as low as 0.1%