21 Aug 2026
Turning Waste into Treasure: Smarter Recycling for a Sustainable Materials Future
What if yesterday’s waste could power tomorrow’s technologies?

7 Aug 2025
An international team of scientists from France, Germany, and Sweden has taken a closer look at how magnetism can change incredibly fast—a phenomenon called ultrafast demagnetization.
For the first time, they were able to observe some of the key steps in this process as it happens in a magnetic material. Their work, published in Nature Communications, could help pave the way for faster and more energy-efficient spintronic devices used for storing and processing information.
[The scheme shows (from left to right): Hot electrons generated by a laser in platinum (light blue), the copper (yellow) is used to block the laser pulse so that only the hot electrons propagate and transport a spin current through the magnetic spin valve structure of cobalt platinum (blue-brown) and iron gadolinium (green). The figure was prepared by author Deeksha Gupta (https://www.helmholtz-berlin.de/pubbin/news_seite?nid=30046;sprache=en).]
While conventional electronics rely on the movement of electric charge, spintronics makes use of a different property of electrons—their spin—to unlock new possibilities. Some of the advantages of spintronics over conventional electronics include lower power consumption, faster operation, non-volatility, and the potential for entirely new functionalities. These features not only improve performance but also contribute to greater sustainability in electronic devices. Spin is a quantum property of electrons that, among other things, contributes to magnetism in materials [¹ Not sure what magnetism is? See the note at the bottom of this page]. In this study, researchers looked at a type of spintronic device called a spin valve. It consists of two or more magnetic layers that conduct electricity. What is special about it is that its electrical resistance changes depending on how the magnetic directions² (or “moments”) of the layers are aligned. This makes spin valves useful in magnetic sensors and data storage technologies. The spin valve in this study was built using alternating layers of platinum-cobalt (Pt/Co) and an iron-gadolinium (FeGd) alloy (see featured image).
Using a femtosecond infrared laser, the team excited electrons³ in the platinum top layer, creating so-called hot electrons. A thick copper layer was used to filter out unwanted effects, ensuring that only the hot electron pulses reached the Pt/Co layer at the front of the spin valve. This layer acted as a spin polariser, producing spin-polarised hot electron (SPHE) pulses. Due to the ultrafast timescales—on the order of femtoseconds—these processes are extremely challenging to observe and characterize. To achieve this, the team conducted experiments at BESSY II, a state-of-the-art synchrotron radiation facility in Germany.
Complementing the experimental work, a research team in Sweden performed advanced simulations using theoretical models developed by Professor Olle Eriksson of Uppsala University and WISE co-director, together with his collaborators. These simulations allowed them to determine key parameters of the SPHE pulses—specifically, their duration, spin polarisation direction, and the current densities needed to reproduce the experimental results.
– I enjoyed working on this project as part of an international team, featuring strong collaboration between theoretical and experimental researchers. During this investigation, we developed the models and collected the data that I plan to use to train AI models in my WASP-WISE NEST project, says Maryna Pankratova, researcher at Uppsala University and WISE-affiliated scientist.
This work has been published in Nature Communications:
”Tuning ultrafast demagnetization with ultrashort spin polarized currents in multi-sublattice ferrimagnets” by Deeksha Gupta, Maryna Pankratova, Matthias Riepp, Manuel Pereiro, Biplab Sanyal, Soheil Ershadrad, Michel Hehn, Niko Pontius, Christian Schüßler-Langeheine, Radu Abrudan, Nicolas Bergeard, Anders Bergman, Olle Eriksson and Christine Boeglin. Nature Communications 16, 3097 (2025).
To learn more about Maryna Pankratova’s research in WISE please visit:
Brain Inspired AI Design of Topological Magnets for Sustainable Computing
Some elements in nature—like iron, nickel, cobalt, and gadolinium—are naturally magnetic. This means they show what’s called ferromagnetism, a property that makes them attract or repel each other depending on the orientation of their magnetic poles. Ferromagnetism arises from the alignment of individual magnetic moments, which can be thought of as tiny bar magnets all pointing in the same direction. These magnetic moments are the result of both the orbital motion of electrons around the nucleus and the electrons’ intrinsic spin, and together they contribute to a material’s overall magnetization.
Depending on how the magnetic moments are arranged, different types of magnetic order can form. For example, if all the moments are aligned in the same direction, the material is a ferromagnet. If neighboring moments point in opposite directions, it is called an antiferromagnet.
Electrons that have absorbed energy and moved to a higher energy level, away from their ground state.
21 Aug 2026
What if yesterday’s waste could power tomorrow’s technologies?
21 Aug 2026
The call for the Knut and Alice Wallenberg Foundation (KAW) Proof of Concept Grants in Materials Science for Sustainability 2026 opens on September 1, 2026.
20 Aug 2026
WIRA-SuPRA is a collaborative platform where academia and industry work together to develop the next generation of sustainable plastics and coatings.
19 Aug 2026
CircuLab is a research infrastructure (Research Technology Platform, RTP) funded by WISE and Stockholm University for the synthesis, processing and application of sustainable materials through integrated AI-driven workflows.
18 Aug 2026
Looking for fresh research perspectives and the opportunity to connect with leading experts? Join us online for the upcoming WISE Invited Professor Lecture on 10 September 2026, from 3:00–4:00 pm […]
18 Aug 2026
From Italy to Germany and now Sweden, Cecilia Bruschi’s academic journey has been driven by a passion for chemistry and materials research.
17 Aug 2026
“We ask ourselves not only what is scientifically possible today, but also what advances are needed to bring these technologies closer to commercialization”, says WISE Fellow and Assistant Professor Lizhou Fan from Linköping University.
10 Aug 2026
Jiayao Duan is currently a postdoctoral researcher at Stockholm University, working with Prof. Erica Zeglio. His research is about developing organic electronic materials for bioelectronics, with a growing focus on sustainability and degradability.
7 Aug 2026
What if the next generation of medical implants could safely dissolve in the body once they’ve done their job and be produced with minimal environmental impact?
3 Aug 2026
On 24 – 25 August, the WISE Community will welcome its newest members to the WISE Welcome Meeting 2026 at Vildmarkshotellet in Kolmården.
25 Jun 2026
Magnus Berggren, Director of WISE, will assume the role as the Executive Director of Knut and Alice Wallenberg Foundation from 1 January 2027. As a result, he will step down as Program Director of the WISE program and remain at Linköping University on a part-time basis.
23 Jun 2026
“Sustainability is the central theme of my research. Rather than focusing only on performance, we aim to develop technologies that are sustainable from the materials level all the way to manufacturing and end-of-life”, says Magdalena Titirici, Professor at the Imperial College London and WISE Invited Professor.
23 Jun 2026
WISE-affiliated researcher, Professor Ergang Wang at Chalmers University of Technology in Sweden, is coordinating a new EU-funded project, SPECTRA, to develop groundbreaking technologies that use solar energy to transform plastic waste into valuable resources. The project also involves Professor Moyses Araujo at Karlstad University, another WISE-affiliated researcher, as a partner.
22 Jun 2026
Knut and Alice Wallenberg Foundation has increased the searchable framework budget with an additional SEK 265 million to the Wallenberg Initiative Materials Science for Sustainability (WISE), marking a significant expansion of the programme.
12 Jun 2026
Imagine opening a juice box made from materials designed with deeper scientific insight into how they behave at the smallest scales.
4 Jun 2026
“My best advice is simple: think before you buy. Many of the products we purchase today ultimately end up very quickly in our waste streams”, says WISE co-Director for Sustainability, Niclas Svensson.
3 Jun 2026
When Zhejian (Jerry) Cao joined the WISE programme in 2023, he was already exploring a promising research direction. What followed was a journey defined by intellectual freedom, interdisciplinary growth, and a clear path toward academic independence
29 May 2026
Don’t miss to register for the upcoming WISE Invited Professor Lecture on 4 June 2026, from 3.00–4.00 pm CET.
28 May 2026
A new research platform for advanced tribological measurements was inaugurated on May 26 at Luleå University of Technology.
27 May 2026
“We want to influence the way electric vehicles are designed and built so multifuctional possibilities are integrated in the design from the beginning”, continues Prof. Leif Asp from Chalmers University of Technology and WISE-afilliated researchers.
26 May 2026
The May WISE Study Trip brought doctoral students and postdocs to Jönköping.
26 May 2026
The call for KAW Proof of Concept Grants in Materials Science for Sustainability will open soon
25 May 2026
The Knut and Alice Wallenberg Foundation has published the call text for the 2026 Proof of Concept Grants in Materials Science for Sustainability is now available. The call opens September 1, 2026, and closes October 15, 2026, at 13:00.
24 May 2026
“Undertaking my PhD under the WISE framework has been a wonderful opportunity and positive experience thus far. It has connected me with a strong network of outstanding researchers and provided a collaborative environment focused on solution-oriented research for a more sustainable future,” says Patrick Korir, PhD student at LTU and Höganäs.
19 May 2026
A successful partnership between CelluXtreme, KTH, and WISE is redefining what sustainable materials can achieve and deliver.
13 May 2026
“The most valuable aspect of this program was meeting different people and understanding different aspects of research”.
11 May 2026
Join us for the 9th Machine Learning Meets Materials Science Seminar, part of the WASP–WISE initiative! Mark your calendars: May 20 at 10:00!
11 May 2026
Don’t miss to register for the upcoming WISE Invited Professor Lecture on 4 June 2026, from 3.00–4.00 pm CET.
8 May 2026
The 2026 Machine Learning for Materials and Molecular Discoveries (ML2MD) symposium will bring together researchers to discuss recent advances at the intersection of machine learning, materials science, and molecular research.
7 May 2026
Sustainability is at the heart of WISE-ap3. All projects are expected to combine cutting-edge materials science with a meaningful contribution to a sustainable future.