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UT El Paso-led team designs cactus-inspired low-cost, efficient water-splitting catalyst

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Researchers led by engineers at The University of Texas at El Paso (UTEP) have proposed a low-cost, cactus-inspired nickel-based material to help split water more cheaply and efficiently. The material is described in a paper in the journal ACS Applied Materials & Interfaces. who led the study. who led the study.

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New low-cost and high-performance multinary intermetallic compound as active electrocatalyst for hydrogen production

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A team comprising scientists who specialize in structure materials at City University of Hong Kong (CityU) has developed a high-performance electrocatalyst based on an innovative concept originally for developing alloys. Their high costs and scarcity hinder the development and applications of this hydrogen production method.

Low Cost 221
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Rice U team creates low-cost, high-efficiency integrated device for solar-driven water splitting; solar leaf

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Rice University researchers have created an efficient, low-cost device that splits water to produce hydrogen fuel. The platform developed by the Brown School of Engineering lab of Rice materials scientist Jun Lou integrates catalytic electrodes and perovskite solar cells that, when triggered by sunlight, produce electricity.

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Ricardo’s low-cost, fuel-efficient automatic transmission concept for motorcycles

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BY contrast, the Ricardo concept avoids these drawbacks and is comparatively simple to integrate into an existing product range. These offer a comparatively low cost solution, but one that is unable to deliver the convenience or comfort of automatic operation. —Stefano Di Palma, AMT lead engineer for Ricardo Motorcycle.

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UK awards £28M for 5 demonstration-phase low-carbon hydrogen production projects

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million) to five demonstration phase projects for low-carbon hydrogen production. The project concerns the production of hydrogen at scale from offshore floating wind in deep water locations. HyNet – low carbon hydrogen plant. The company will also develop further plans for large scale production of electrolyzers.

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Evonik develops novel anion exchange membrane for electrolytic production of hydrogen; CHANNEL project

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Evonik has now developed a novel anion exchange membrane (AEM), which should contribute to the breakthrough of electrolytic production of hydrogen. CHANNEL stands for Cost-efficient Hydrogen production unit based on ANionN exchange membrane Electrolysis.

Hydrogen 433
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Argonne and University of Illinois to form Midwest Hydrogen and Fuel Cell Coalition

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The Midwest also has a large nuclear energy component to its electric power grid, and hydrogen production from electrolysis using nuclear electricity at times of low power demand can help to improve the economics of these existing power stations.

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