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New catalyst synthesis method for solar water splitting to produce hydrogen

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A research team led by Daegu Gyeongbuk Institute Of Science And Technology (DGIST) Professor Jong-Sung Yu in Korea, with colleagues at UC Berkeley and Xi’an Jiaotong University in China, has successfully developed a new catalyst synthesis method that can efficiently decompose water into oxygen and hydrogen using solar light.

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CPT launching water-cooled electric supercharger for commercial diesel engines

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At the 17 th Supercharging conference this week in Dresden, Controlled Power Technologies (CPT) will launch what it says is the first water-cooled electric supercharger developed for “quasi-continuous” boosting of commercial diesel engines, including those developed for off highway applications. Cobra electric supercharger. Click to enlarge.

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Researchers Discover Inexpensive Catalyst That Generates Hydrogen from Buffered Water or Sea Water

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[(PY5Me 2 )Mo(CF 3 SO 3 )] 1+ reacts with water to form. In addition, our catalyst does not require organic additives, and can operate in neutral water, even if it is dirty, and can operate in sea water, the most abundant source of hydrogen on earth and a natural electrolyte. PY5Me 2 )MoO] 2+ and H 2. Click to enlarge.

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An abundant and inexpensive water-splitting photocatalyst with low toxicity active in visible light

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Researchers at Japan’s National Institute for Materials Science (NIMS) have discovered a new photocatalyst, Sn 3 O 4 , which facilitates the production of hydrogen fuel from water, using sunlight as an energy source. A paper on their work is published in the ACS journal Applied Materials & Interfaces. Source: NIMS. Click to enlarge.

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Researchers demonstrate water splitting to generate hydrogen using ultra-small Si nanoparticles

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The ultra-small particles react with water to generate hydrogen 1,000 times faster than bulk silicon, 100 times faster than previously reported Si structures, and 6 times faster than competing metal formulations. Water can also be split chemically using a substance that can be oxidized by water, such as aluminum or silicon, the authors notes.

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DOE to issue $3M FOA for High-Performance Computing for Materials; focus on severe, complex environments

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The Department of Energy announced a funding opportunity totaling $3 million to support projects between US industry and DOE national laboratories related to improving materials in severe or complex environments through the new High Performance Computing for Materials in Applied Energy Technologies ( HPC4Mtls ) Program. Earlier post.).

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BNL Researchers develop low-cost, efficient, non-noble metal electrocatalyst to produce hydrogen from water

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James Muckerman at the US Department of Energy’s (DOE) Brookhaven National Laboratory (BNL) have developed a new class of high-activity, low-cost, non-noble metal electrocatalyst that generates hydrogen gas from water. The National Sychrotron Light Source and other Brookhaven user facilities are supported by the DOE Office of Science.

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