Hydrogen is a much-debated option in terms of COâ‚‚-neutral energy production. Electrolyzer units that split water into its ...
Japanese researchers have developed a palladium-based nanosheet catalyst that they claim could produce hydrogen at a fraction of the cost compared to existing technology.
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Low-cost, palladium-based nanosheet catalyst matches platinum's performance in hydrogen productionThe discovery marks a breakthrough in the hydrogen evolution reaction (HER) technology, which is a key process in green hydrogen energy generation. HER occurs in the process of electrolytic splitting ...
and hydrogen evolution reaction (HER). By anchoring Ru clusters onto hierarchically layered Zn-N-C nanosheets (denoted as Ru@Zn-SAs/N-C), the team has designed a material that outperforms ...
Aluminum (Al) has been considered as a material susceptible to corrosion, but it will become key to core technology in producing clean hydrogen energy. Recently, a POSTECH research team succeeded in ...
This study reveals tungsten carbide-carbon nanofoam composites as efficient electrocatalysts for hydrogen evolution, ...
Electrocatalytic nitric oxide reduction reaction (NORR) offers a promising route for sustainable ammonia (NH3) synthesis and ...
Aluminum (Al) has been considered as a material susceptible to corrosion, but it will become key to core technology in producing clean hydrogen ...
After that, Dr Zhihong Huang took over, shifting the focus to the hydrogen evolution reaction (HER). He discovered that ETS could be used to detect hydrogen adsorbed at different sites on platinum.
and hydrogen evolution reaction (HER). By anchoring Ru clusters onto hierarchically layered Zn-N-C nanosheets (denoted as Ru@Zn-SAs/N-C), the team has designed a material that outperforms ...
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