Affordable, green energy production has long been promoted as a means to accelerate the decarbonization of sectors such as ...
A new catalyst strategy developed at Institute of Science Tokyo uses BaSi2 as a support for nickel and cobalt to decompose ammonia at lower temperatures. By forming unique ternary transition ...
Dr. Chengzhang Wan reveals performance data and comments about efficiency and durability advancements which signal a greener future for hydrogen technology “Longevity is more crucial than activity in ...
Ammonia isn't just for cleaning supplies and plant fertilizers—it can also serve as a precursor to clean hydrogen energy. The decomposition of ammonia (NH3) is a promising carbon-free pathway that ...
Scientists in Europe are developing a new PFAS-free way to produce green hydrogen using far less of the rare metal iridium.
Researchers developed an yttrium doped nickel catalyst that creates stable oxygen vacancies to improve ammonia decomposition for clean hydrogen production.
Hydrogen is a vital feedstock for chemicals and fertilizers, and it’s gaining traction as a transportation fuel. But it is made today by heating natural gas to 1000°C, emitting 9–12 kg of carbon ...
Daily Maverick on MSN
Hydrogen is back on platinum industry’s radar with China leading the way
Talk about hydrogen fuel technology and its potential as a driver for platinum demand has long been just that – talk. But ...
In another instance of AI making itself genuinely useful, researchers at the University of Toronto (UoT) have identified a better catalyst for the production of green hydrogen using AI – saving ...
Morning Overview on MSN
New triangular aluminum compound could outperform platinum as a catalyst
A research team at King’s College London has isolated a triangular aluminum compound, called a cyclotrialumane, that can ...
Flexible spheres of the biomolecule chitosan, made from shrimp waste, can be used for catalysts that generate hydrogen gas from borohydride salts. A research team now shows how the spheres can ...
Platinum is a key industrial catalyst because its electronic structure gives it an exceptional ability to accelerate oxidation and hydrogenation chemical reactions. Among its uses are in catalytic ...
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