#watersplitting — Public Fediverse posts
Live and recent posts from across the Fediverse tagged #watersplitting, aggregated by home.social.
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https://www.europesays.com/ie/582264/ Synthesis of Ce-MOF/Ag composites with improved electrocatalytic activity and stability for sustainable water splitting #CeMOF #chemistry #Éire #EnvironmentalSciences #HumanitiesAndSocialSciences #HydrogenProduction #IE #Ireland #MaterialsScience #multidisciplinary #NanoComposites #Science #SilverNanoparticles #WaterSplitting
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🧪 Synthesizing solid catalysts is one thing, but for their application, they also need to undergo shaping or - in case of 🔌 #electrocatalysis - deposition on electrodes. Such steps are sometimes underrated in academic #catalysis research.
👉 Find out more on the strong effects of different binder additives on the wetting behavior of electrodes for #watersplitting in our recent collaborative work with the Particle Science and Technology Group of Doris Segets at @unidue.bsky.social.
🔗 https://doi.org/10.1021/acsami.5c15573
🤝 We are very happy to provide our powder catalysts for such important studies that open the door towards 🍃 green applications. Thanks for the fruitful collaboration and special congrats to the first author Adarsh! 👏
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https://phys.org/news/2025-03-scientists-nm-ru-based-alloy.html
Sub-5 nm Ru-based alloys have gained attention as promising electrochemical catalysts for water splitting. However, their synthesis has been constrained by thermodynamic immiscibility, which limits the development of a universally applicable preparation method.
In this study, the research team employed nanosecond laser ultrafast confined alloying (LUCA) to overcome the immiscible-to-miscible transition barrier…
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https://phys.org/news/2025-03-scientists-nm-ru-based-alloy.html
Sub-5 nm Ru-based alloys have gained attention as promising electrochemical catalysts for water splitting. However, their synthesis has been constrained by thermodynamic immiscibility, which limits the development of a universally applicable preparation method.
In this study, the research team employed nanosecond laser ultrafast confined alloying (LUCA) to overcome the immiscible-to-miscible transition barrier…
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Unveiling the role of interface interactions in #Artificial #Photosynthesis. With #InSitu X-ray #Spectroscopy at near-ambient pressure, scientists tracked the carbon nitride #Photocatalyst surface step-by-step t/out the #WaterSplitting process.
https://nachrichten.idw-online.de/2025/01/23/artificial-photosynthesis-decoded-how-carbon-nitride-splits-water-and-enables-green-hydrogen -
Unveiling the role of interface interactions in #Artificial #Photosynthesis. With #InSitu X-ray #Spectroscopy at near-ambient pressure, scientists tracked the carbon nitride #Photocatalyst surface step-by-step t/out the #WaterSplitting process.
https://nachrichten.idw-online.de/2025/01/23/artificial-photosynthesis-decoded-how-carbon-nitride-splits-water-and-enables-green-hydrogen -
Unveiling the role of interface interactions in #Artificial #Photosynthesis. With #InSitu X-ray #Spectroscopy at near-ambient pressure, scientists tracked the carbon nitride #Photocatalyst surface step-by-step t/out the #WaterSplitting process.
https://nachrichten.idw-online.de/2025/01/23/artificial-photosynthesis-decoded-how-carbon-nitride-splits-water-and-enables-green-hydrogen -
Unveiling the role of interface interactions in #Artificial #Photosynthesis. With #InSitu X-ray #Spectroscopy at near-ambient pressure, scientists tracked the carbon nitride #Photocatalyst surface step-by-step t/out the #WaterSplitting process.
https://nachrichten.idw-online.de/2025/01/23/artificial-photosynthesis-decoded-how-carbon-nitride-splits-water-and-enables-green-hydrogen