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Harvard team demonstrates new metal-free organic–inorganic aqueous flow battery; potential breakthrough for low-cost grid-scale storage

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Furthermore, this electrode permits higher charging voltages by suppressing the parasitic water-splitting reactions. The quinones are dissolved in water, which prevents them from catching fire. Quinones are abundant in crude oil as well as in green plants. —Michael J. Commercialization. —ARPA-E Program Director John Lemmon.

Low Cost 374
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Ethanol-fueled solid oxide fuel cells with HEA internal reforming catalyst for transportation applications

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Researchers from Lawrence Berkeley National Laboratory and the University of Connecticut have demonstrated high-performance metal-supported solid oxide fuel cells (MS-SOFC) with an integrated high entropy alloy (HEA) internal reforming catalyst (IRC) for transportation applications using ethanol and methanol as fuels.

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DOE awards $20M to 10 hydrogen production and delivery technologies projects

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University of Hawaii of Honolulu, Hawaii will receive $3 million to develop photoelectrodes for direct solar water splitting. University of Colorado, Boulder of Boulder, Colorado will receive $2 million to develop a novel solar-thermal reactor to split water with concentrated sunlight. FuelCell Energy Inc.

Hydrogen 253
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DOE to award $15.8M to 30 hydrogen and fuel cell technologies projects

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million for 30 new projects aimed at discovery and development of novel, low-cost materials necessary for hydrogen production and storage and for fuel cells onboard light-duty vehicles. Advanced Water Splitting Materials. Precursor Development for Low-Cost, High-Strength Carbon Fiber. University of Connecticut.

Hydrogen 170
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Study shows a much cheaper catalyst can generate hydrogen in a commercial electrolyzer

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Researchers at the Department of Energy’s SLAC National Accelerator Laboratory and Stanford University have shown for the first time that a low-cost, non-precious metal cobalt phosphide (CoP) catalyst catalyst can split water and generate hydrogen gas for hours on end in the harsh environment of a commercial device.

Hydrogen 218
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DOE to award ~$13.5M to 16 R&D projects for solid-oxide fuel cell technologies

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SOFC technologies enable efficient, cost-effective electricity generation from abundant domestic coal and natural gas resources, with minimal use of water and near-zero atmospheric emissions of carbon dioxide and pollutants. Sputtered Thin Films for Very High Power, Efficient, and Low-Cost Commercial SOFCs.

Fuel 170
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DOE to invest $30M to further H2 and fuel cell technology as industry continues strong growth

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HydroGEN Consortium (HydroGEN) –this consortium will accelerate the development of advanced water splitting materials for hydrogen production, with an initial focus on advanced electrolytic, photoelectrochemical, and solar thermochemical pathways. According to the DOE’s 2015 Fuel Cell Technologies Market Report, many U.S.