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University of Houston team demonstrates new efficient solar water-splitting catalyst for hydrogen production

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Researchers from the University of Houston (UH) have developed a cobalt(II) oxide (CoO) nanocrystalline catalyst that can carry out overall water splitting with a solar-to-hydrogen efficiency of around 5%. Catalysts Hydrogen Production Solar' They report on their work in a paper in the journal Nature Nanotechnology.

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DOE selects Shell-led consortium to demonstrate feasibility of large-scale liquid hydrogen storage in $12M project

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(Shell), a subsidiary of Royal Dutch Shell plc, is working to enable large-scale liquid hydrogen (LH 2 ) storage for international trade applications. Shell and the consortium partners—including McDermott’s CB&I Storage Solutions, NASA’s Kennedy Space Center, GenH2 and the University of Houston—have been selected by the U.S.

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Syzygy Plasmonics raises $23M Series B to electrify chemical manufacturing; photocatalytic reactor for hydrogen production

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Licensed from Rice University, Syzygy’s “antenna-reactor” plasmonic photocatalyst has been published in leading academic journals such as Science , Nature , and PNAS. Today, the production of chemicals such as plastics, fuels, fertilizers, and hydrogen is primarily reliant on fossil fuel. Earlier post.).

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US/China team develops robust, stable Ni/Fe OER catalyst for water-splitting at low overpotentials

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A team from the University of Houston and Hunan Normal University in China has developed an active and durable oxygen evolution reaction (OER) catalyst for water splitting that meets commercial crtieria for current densities at low overpotentials.

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DOE announces $29M in funding for fusion energy technology development

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University of California, San Diego. The University of California, San Diego, seeks to address this issue by developing a low-atomic-number renewable wall for fusion devices that contains a slurry composed of carbon, ceramics, and a volatile binder. University of Houston. Colorado School of Mines.

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Researchers Develop More Reactive Form of Platinum That Could Result in Less Expensive, More Efficient Fuel Cells

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Researchers at the Department of Energy’s SLAC National Accelerator Laboratory and the University of Houston have tuned the catalytic activity of dealloyed bimetallic nanoparticles to produce a more reactive form of platinum that could be used to make less expensive, more efficient fuel cells. This is a significant advance.

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5 Big Ideas for High-Temperature Superconductors

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“Over the past 15 years, the emphasis has moved toward using [these materials] less as high-temperature superconductors and more as high-field superconductors,” says Venkat Selvamanickam , who directs the Applied Research Hub of the Texas Center for Superconductivity at the University of Houston. tesla magnetic field in 2014.

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