Figure 1: Fabrication and single-particle spectromicroscopy of the model system to observe hydrogen spillover. Figure 2: Hydrogen spillover on the aluminium oxide support. Figure 3: Hydrogen spillover ...
As the world shifts toward sustainable energy sources, 'green hydrogen' - hydrogen produced without emitting carbon - has emerged as a leading candidate for clean power. Scientists have now developed ...
Storing hydrogen is expensive and inefficient. In a pilot plant on ETH Zurich’s Hönggerberg campus, ETH researchers are showing how this could soon change. The researchers react the hydrogen with iron ...
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Iron oxide 'oxygen sponge' doubles green hydrogen production efficiency by targeting atomic-level active sites
As the world shifts toward sustainable energy sources, "green hydrogen"—hydrogen produced without emitting carbon—has emerged as a leading candidate for clean power. In a significant step forward, a ...
(Nanowerk News) Swedish researchers have discovered a new and efficient way to use electrocatalysis to produce hydrogen gas from water. Instead of using expensive and difficult-to-obtain platinum ...
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Iron-based catalyst achieves near-perfect efficiency for water oxidation, offering sustainable hydrogen production
A newly developed pentanuclear iron complex (Fe5-PCz(ClO 4) 3) can offer an efficient, stable, and cost-effective solution for water oxidation. By electrochemically polymerizing the complex, ...
Photochemical reactions of minerals are underappreciated processes that can make or break chemical bonds. We report the photooxidation of siderite (FeCO₃) by UV radiation to produce hydrogen gas and ...
This is a preview. Log in through your library . Abstract Ferrous iron in a coal mine drainage water at Wildwood, Pennsylvania, was found to be oxidizing and precipitating in a small receiving stream.
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