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Faraday Institution commits a further $31M to battery research to deliver commercial impact

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million (US$31-million) commitment to build on its momentum in four key research challenges: extending battery life; battery modelling; recycling and reuse; and solid-state batteries. Solid-state batteries (SOLBAT) , led by Prof Peter Bruce, University of Oxford, with researchers from the Universities of Liverpool, Sheffield, Warwick and UCL.

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Stanford team develops new ultrahigh surface area 3D porous graphitic carbon material for improved energy storage

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Stanford University scientists have created a new ultrahigh surface area three-dimensional porous graphitic carbon material that significantly boosts the performance of energy-storage technologies. The general strategy toward the above-mentioned graphene networks is to use graphene oxides (GOs) as building blocks.

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DOE announces $60M to accelerate advanced vehicle technologies research

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The research pathways focus on fuel diversification, vehicle efficiency, energy storage, lightweight materials, and new mobility technologies to improve the overall energy efficiency and affordability of the transportation system. Lithium-sulfur and lithium-air battery cell development.

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ARPA-E awarding $36M to 22 projects in RANGE program for transformative EV storage

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The US Department of Energy (DOE) Advanced Research Projects Agency - Energy (ARPA-E) will award approximately $36 million to 22 projects to develop transformational electric vehicle (EV) energy storage systems using innovative chemistries, architectures and designs. University of Houston. Princeton University.

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Researchers use DNA to stabilize sulfur cathode for high-performance Li-sulfur batteries

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A team from the China University of Geosciences has taken a novel approach to stabilizing Lithium-sulfur batteries by functionalizing the carbon-sulfur cathode with DNA. Rechargeable lithium/sulfur battery promises an appealing candidate for energy storage to power portable devices and electric vehicles.

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Ilika to work with Johnson Matthey on 3-year project to develop protected anodes for Li-S batteries

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UK-based materials company Ilika, also a developer of solid-state batteries, is taking part in a three-year project to develop protected anodes for lithium sulfur batteries, led by Johnson Matthey Plc and supported by Innovate UK and the Engineering and Physical Sciences Research Council (EPSRC).

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Graphene sheet-sulfur/carbon composite cathode for higher performance Li-sulfur batteries

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Schematic of the preparation of a 3-D hierarchically structured graphene-sulfur/carbonZIF8-D composite. Lithium-sulfur batteries offer a theoretical specific energy densities approaching 2600 Wh kg ?1 Batteries Li-Sulfur' An open access paper on the work is published in the journal APL Materials. Click to enlarge.

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