Designer nanoparticles for biomedicine and energy: Physics meets biology and chemistry
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AI plain-English summaryNanoparticles—tiny specks of metal smaller than a wavelength of light—are currently made using toxic solvents and hazardous chemicals. Researchers at Swansea University have found a way to make them in a vacuum, without any liquid at all. This matters because nanoparticles are already everywhere: the red line on a Covid test is made of nanoscale gold. But making them conventionally creates environmental and health risks that limit how widely they can be used. The new solvent-free method could remove those barriers entirely. If the project succeeds, it could transform manufacturing across multiple industries. Gold nanoparticles are used in medical diagnostics and cancer treatment; iridium and platinum particles are key to producing clean hydrogen fuel; silicon nanoparticles improve solar panels and photonic devices. The team plans to scale production from grams to kilograms—and potentially tonnes—using wafer and roll-to-roll technology, the same kind used to make flexible electronics. This is fundamental science at the boundary of physics, chemistry, and biology. It does not promise a specific product by a set date. But if the method works at industrial scale, it could make everything from rapid medical tests to green energy catalysts cheaper, safer, and far more abundant.
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