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GWU team develops low-cost, high-yield one-pot synthesis of carbon nanofibers from atmospheric CO2

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A team led by Dr. Stuart Licht at The George Washington University in Washington, DC has developed a low-cost, high-yield and scalable process for the electrolytic conversion of atmospheric CO 2 dissolved in molten carbonates into carbon nanofibers (CNFs.)

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DOE awards $17M for vehicle technologies; batteries, PEEM, engines, materials, fuel

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University of Colorado Boulder. 30 kW Modular DC-DC System using Superjunction MOSFETs This project will develop a new modular power conversion approach that utilizes both silicon and WBG devices to address the fundamental power conversion, loss, and component stress mechanisms. University of Wisconsin - Madison.

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DOE to award up to $137M for SuperTruck II, Vehicle Technology Office programs

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Develop and demonstrate an off‐board bi‐directional DC charging system for plug‐in electric vehicles and evaluate impact of grid services on PEV batteries. Accelerated Development and Deployment of LowCost Automotive Mg Sheet Components (Area of Interest 3). Ohio State University. Iowa State University.

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DOE awards $45M to 38 advanced transportation technology projects; $3M from the Army

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University of Michigan. The Ohio State University. Arizona State University. Mississippi State University. Johns Hopkins University. This project will demonstrate laser-assisted joining of aluminum and carbon fiber components to reduce vehicle weight. The Ohio State University. Description.

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ARPA-E awards $175M to 68 novel clean energy OPEN 2021 projects

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The selected projects—spanning 22 states and coordinated at universities, national laboratories, and private companies—will advance technologies for a wide range of areas, including electric vehicles, offshore wind, storage and nuclear recycling. Cornell University. Stanford University. The Ohio State University.

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DOE seeking comment on draft $50M solicitation for new projects over 11 areas of interest to improve vehicle performance and decrease fuel consumption

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High Temperature DC Bus Capacitor Cost Reduction & Performance Improvements. Further, alloying or coating pathways towards low-cost, effective passive films, have not been sufficiently explored in a sound and scientific way. Carbon Fiber Polymer Composite. Advanced Climate Control Auxiliary Load Reduction.

Li-ion 240
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DOE announces $58M in funding for advanced vehicle technologies

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US Energy Secretary Ernest Moniz used the Washington DC Auto show as the venue to announce $58 million in funding for vehicle technology advancements. DOE will fund cost-shared projects with private industry, national laboratories, and university teams. Carbon Fiber Polymer Composite. per pound of weight saved.

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