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Univ. of Maryland team develops tin-film on wood fiber anode for Na-ion batteries; targeting grid storage

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A team at the University of Maryland has demonstrated that a material consisting of a thin tin (Sn) film deposited on a hierarchical conductive wood fiber substrate is an effective anode for a sodium-ion (Na-ion) battery, and addresses some of the limitations of other Na-ion anodes such as capacity fade due to pulverization.

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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 announces $139M in funding for 55 projects to advance innovative vehicle technologies

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The Research Foundation for The SUNY Stony Brook University. University of Delaware. University of Maryland. AOI 02: Low Cost Electric Traction Drive Systems Using No Heavy Rare Earth Materials. Low Cost, High-Performance, Heavy Rare Earth-Free 3-In-1 Electric Drive Unit. Marquette University.

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DOE selects 15 projects for $32M to advance lower-cost fusion concepts; ARPA-E BETHE

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However, there remains a need to lower the costs of fusion development and accelerate its development timeline to have appreciable impact. Winning BETHE projects are: Category A: Development of Lower-Cost Concepts. University of Wisconsin-Madison. University of Maryland, Baltimore County. University of Washington.

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ARPA-E announces $98M in funding for 40 OPEN projects; two opposed-piston engines projects receive $10M total

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Of those selected, approximately 43% of OPEN 2018 projects will be led by universities, 35% by small businesses, and the remainder by large businesses, non-profit organizations or federally funded research and development centers (FFRDCs). University of California, San Diego. University of Delaware. Vanderbilt University.

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NETL investigating researching chemistries for large-scale battery- and supercapacitor-based grid energy storage systems

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The goal is to develop energy storage systems with high-energy density to meet the ever-demand for the electric grid to provide reliable, distributed power. High-energy density magnesium batteries for smart electrical grids. Innovative fabrication methods can also lead to significant energy storage system improvements. Earlier post.)

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DOE ARPA-E awards $156M to projects to 60 projects to accelerate innovation in clean energy technologies

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The new ARPA-E selections focus on accelerating innovations in clean technology while increasing US competitiveness in rare earth alternatives and breakthroughs in biofuels, thermal storage, grid controls, and solar power electronics. University of Massachusetts, Amherst. University of Illinois. University. Description.

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