Combining hydrogen-based processes with advanced catalysts and renewable energy paves the way for developing economically and ...
The research team has developed a new non-precious metal catalyst based on low-cost cobalt-iron. This catalyst demonstrates excellent ammonia decomposition performance at a low expense, maintaining ...
Cornell researchers capture real-time transformation of a cobalt-manganese oxide catalyst, revealing potential as a ...
Methanol, important for the manufacture of many everyday goods and for its green energy potential, may soon be produced faster and more efficiently thanks to a collaboration that included two Oregon ...
Key Lab of Functional Molecular Engineering of Guangdong Province, School of Chemistry and Chemical Engineering, South China University of Technology; Guangzhou 510641, China ...
Key Laboratory of Coal to Ethylene Glycol and Its Related Technology, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, Fujian 350002, P. R. China College ...
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Tech Xplore on MSNX-ray study sheds light on cost-effective fuel cell material that could rival platinumCornell researchers have captured an unprecedented, real-time view of how a promising catalyst material transforms during ...
Advancements in nano-catalysts are transforming biofuel production, increasing efficiency and quality while supporting ...
Yale chemist Hailiang Wang and his colleagues report their most recent success in turning industrial emissions of CO2, a major greenhouse gas causing climate change, into methanol, a common liquid ...
Scientists have taken a critical next step in creating a scalable process to remove carbon dioxide (CO2) from the air and 'recirculate' it as a renewable fuel. Chemists now describe their latest ...
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