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A grant from the U.S. Department of Defense will allow UCR researchers to address one of physics' most complex mysteries - ...
Researchers at the Manchester Institute of Biotechnology (MIB) have demonstrated how genetically engineered enzymes can ...
“If we can understand that and tweak, you know, manipulate it to optimize it, then we can make more biomass, or we can better ...
Research identifies key mechanisms behind copper catalyst degradation in CO2 reduction, enhancing understanding for improved ...
Photosynthesis, the process that fuels our planet’s ecosystems, has been meticulously studied, yet a key detail – how plants efficiently convert light energy into usable fuel – has eluded complete ...
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Iron and blue light enable rapid, low-toxicity creation of carbohydrates for new antibioticsHowever, these elements require harsh reaction conditions, are expensive to use and are ... an OU team led by Professor Indrajeet Sharma has replaced these precious metals with either blue light or ...
Innovation Center for Chemical Sciences, College of Chemistry, Chemical Engineering and Materials Science, Soochow University, 199 Ren-Ai Road, Suzhou Industrial Park, Suzhou 215123, Jiangsu, China ...
Attribution (BY): Credit must be given to the creator. Electrochemistry can enable sustainable chemical manufacturing but is limited by the reactions possible with conventional metal electrodes.
It includes topics such as photosynthesis, vision, bioluminescence, circadian rhythms and photodynamic therapy. With the increase in antibiotic resistance worldwide, light-induced phototherapies ...
Their study, published in Chem, describes a novel light-driven reaction that efficiently produces tetrahydroisoquinolines, a group of chemicals that play a crucial role in medicinal chemistry.
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