Salt-based catalysts enable selective production of mirror-image molecules
A research team based in Bochum and Mülheim is using a new type of salt to specifically produce one of two possible mirror-image molecules.
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A research team based in Bochum and Mülheim is using a new type of salt to specifically produce one of two possible mirror-image molecules.
Aluminum (Al) is a material considered susceptible to corrosion, but it could become key to core technology in producing clean hydrogen energy. A POSTECH research team succeeded in dramatically improving the performance of ...
Researchers in South Korea have developed an advanced liquid metal catalyst incorporating selenium (Se) to enhance the efficiency of turquoise hydrogen production.
A research team has identified critical factors influencing the electrochemical reduction of carbon dioxide (CO2RR) using tin monoxide (SnO)-based electrocatalysts.
As the severity of climate change and carbon emissions becomes a global concern, technologies to convert carbon dioxide (CO2) into resources such as chemical fuels and compounds are urgently needed. Dr. Dahee Park's research ...
As the world moves toward sustainable energy, hydrogen will likely play an invaluable role as a clean and versatile fuel. Yet, adoption of hydrogen technologies hinges on overcoming key challenges in electrocatalysis, where ...
Using a series of more than 1,000 X-ray snapshots of the shapeshifting of enzymes in action, researchers at Stanford University have illuminated one of the great mysteries of life—how enzymes are able to speed up life-sustaining ...
Given that alcohol is the most frequent functional group found in bioactive natural products and marketed drugs, and is a versatile synthetic intermediate with a middle level of carbon oxidation state with massive synthetic ...
A research team has utilized metal corrosion to prepare high-performance electrodes, enabling efficient and cost-effective upgrading of bio-based 5-hydroxymethylfurfural (HMF). Their study is published in Chem Catalysis.
The urgent need for a transition to sustainable energy sources demands a significant acceleration of traditional research and development cycles. Self-driving labs (SDLs), powered by artificial intelligence (AI), could play ...