A low-loading IrO₂@TaB₂ nano-diboride support has been shown to deliver ultrastable oxygen evolution at current densities above 2 A cm⁻² in acidic water electrolysis. The TaB₂ framework spatially ...
Researchers reveal performance boost mechanism in single-atom catalyst for oxygen evolution reaction
Hydrogen energy, with its green, low-carbon and high-calorific-value properties, is emerging as the new key to solving the energy crisis. Electrochemically, water splitting has garnered much attention ...
Low-temperature plasma-assisted catalysis has emerged as a promising approach for activating chemically stable molecules under non-equilibrium conditions.
Technologies that convert carbon dioxide (CO₂) emitted from factories and power plants into useful chemical feedstocks are considered key to achieving carbon neutrality. However, rapid degradation of ...
Researchers developed advanced catalysts that efficiently remove nitrogen oxides and carbon monoxide through simultaneous reactions, offering a stable and scalable clean air solution. The research ...
This schematic illustrates the comprehensive framework for advancing non-noble metal catalysts in acidic oxygen evolution reactions (OER). It highlights three core research questions—mechanism of ...
The building-block chemicals behind everyday products—like shampoo bottles, food containers, and kitchen spatulas—are largely derived from oil. Researchers are now working to replace those fossil-fuel ...
The processing of heavier feedstocks in fluid catalytic cracking units (FCCUs) has increased the prevalence of iron (Fe) poisoning, which can limit catalyst diffusivity, activity and operational ...
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