
Institute of Materials Science of Madrid scientists create flower-shaped iron oxide nanoparticles that can capture nanoplastics and convert waste into functional material.
Researchers at the Institute of Materials Science of Madrid developed flower-shaped iron oxide nanoparticles capable of capturing nanoplastics from PET, converting environmental pollutants into functional materials for water purification.
AI-generated summary
Researchers previously extracted microplastics from cosmetics in 2024 using similar magnetic particles.
From plastic that pollutes water to a tool that helps clean it up. Researchers at the Institute of Materials Science of Madrid (ICMM), part of the CSIC, have developed flower-shaped iron oxide nanoparticles capable of capturing nanoplastics, fragments a thousand times smaller than a microplastic, originating from PET, one of the most common materials in bottles, packaging and polyester clothing. The study has been published in the Chemical Engineering Journal.
The secret lies in the shape. "Iron oxide is a magnetic material that makes it possible to trap many pollutants at once. On top of that, its nanoflower structure means that the particles have several nuclei that work together to enhance their magnetic properties", explains Álvaro Gallo-Córdova, a researcher at the ICMM-CSIC and one of the main authors of the study, alongside Rafael Herrera-Aquino and María del Puerto Morales.
From microplastics in make-up to nanoplastics from PET
This is not the first time these particles have proved their worth: in 2024 they had already managed to extract and break down microplastics, between 0.001 and 5 millimetres in size, originating from cosmetics. The leap now is one of scale. Nanoplastics measure about a billionth of a metre, a thousand times smaller than those microplastics.
"When they reach the end of their useful life, a large share of PET plastics ends up in the environment, where sunlight and physical wear act like sandpaper, grinding them down into nanoplastics, a kind of ultra-fine dust that contaminates our soils and water sources", adds Gallo-Córdova.
Just one gram of these magnetic nanoflowers can capture up to 10,000 milligrams of nanoplastics, a figure the team itself describes as unprecedented to date.
The pollutant that helps clean up other pollutants
The job does not end with capture. Once the nanoplastic has been trapped, the team turns it into a magnetic material capable of extracting heavy metals or organic dyes from water, and can even involve it in catalytic degradation processes.
"After capturing the nanoplastics with our magnetic nanoparticles, we turn them into functional materials, transforming a polluting waste into a new raw material within a circular-economy approach", the researcher sums up. Put another way, they use the waste itself to remove other pollution, giving a second life to something that would normally end up in the bin.
The process uses barely any energy, because magnetic heating acts locally, right on the surface of the nanoparticles, without the need to heat all the water.

Eight years after launch, the BepiColombo spacecraft is set to separate its modules on 3 September to begin orbit insertion around Mercury, facing extreme temperatures and solar radiation as it prepares for a complex mission to study the planet's dense core, magnetic field, and surface features, with science operations scheduled to begin in April 2027.

NASA launched the Nancy Grace Roman Space Telescope aboard a SpaceX Falcon Heavy from Kennedy Space Center on Sunday. The $4 billion observatory, named after NASA's 'Mother of Hubble,' will survey the universe from 1.5 million km from Earth to study dark matter, dark energy, exoplanets, and supernovae, aiming to test the standard model of cosmology and generate 1.3 terabytes of data daily.

Italian ESA astronaut Luca Parmitano will be the first European to join NASA's Artemis III mission, set to launch in 2027, aiming to return humans to the Moon. He highlights the mission's complexity and the strong EU-US partnership in space exploration.

New research from the European Southern Observatory (ESO) warns that the planned launch of 1.7 million satellites could have devastating consequences for astronomy, making the night sky up to four times brighter and obscuring celestial views. The study calls for a limit of 100,000 satellites to preserve astronomical observation.

The US National Science Foundation will continue its Ocean Observatories Initiative research program after lawmakers passed a bill protecting its existence. The program collects crucial data on oceanic currents and climate change impacts.

A new study on Southern California's earthquake risk, published in the Journal of Geophysical Research: Solid Earth, reveals that tectonic stress on the San Andreas and San Jacinto fault systems has reached its highest levels in 1,000 years. Researchers used a computer model based on 1,000 years of geological data to estimate current stress levels, finding the San Jacinto-Bernardino section has reached 3.6 megapascals. The study also suggests that under certain conditions, the two major fault systems could rupture simultaneously, leading to more destructive earthquakes affecting millions.