Instituto de Nanociencia y Materiales de Aragón
  • EspañolEspañol
Intranet
  • THE INSTITUTE
    • General information
      • Welcome
      • History of the Institute
      • Organizational chart
      • Departments
        • Department 1: Functional organic materials
        • Department 2: Materials for energy and environment
        • Department 3: Physics of materials and nanosystems
        • Department 4: Bio-nano-medicine
        • Department 5: Multifunctional magnetic materials
      • Scientific Committee
      • Annual Reports
      • Welcome Handbook
      • Associations
    • Directory
    • Location and contact
  • RESEARCH
    • Research Areas
      • Area 1: Materials for energy
        and environment (MEM)
      • Area 2: Materials for biomedicine (BIO)
      • Area 3: Materials for information
        technology (MTI)
      • Area 4: New phenomena at the
        nanoscale (NFN)
      • Area 5: Synthesis, processing and scaling
        of advanced functional materials (SPE)
      • Area 6: Singular experimental
        technologies (TES)
    • Research Groups
    • Scientific publications
    • International projects
    • INMA scientific infrastructure
    • Microdevices Engineering Technical Unit (UTIM)
      • Structure UTIM
      • Catalog UTIM
      • Capabilities UTIM
      • Applications UTIM
    • INMA large scientific facilities
    • CEQMA Scientific-Technical Services
  • TRAINING
    • Master NANOMAT
    • Degree studies
    • Master studies
    • PhD studies
    • Internships
    • Scholarships and grants
    • Course of introduction to laboratory safety -SegurINMA
    • Research career path in Spain
  • JOB OFFERS
  • DISSEMINATION
    • Activities
      • General public
      • Schools and institutes
      • Special events
        • Researchers’ Night
        • Woman and science
        • Semana de la Ciencia
          Valle de Benasque
      • Cátedra SAMCA de Nanotecnología (EN)
      • LMA
    • Projects
    • Advising and training
    • Awards and distinctions
    • Multimedia
  • TRANSFER
    • Technological offer
      • Patents
      • Capabilities for industry
    • Transferred technology
    • Spin-offs
  • EQUALITY
    • Protocols and prevention against harassment
Instituto de Nanociencia y Materiales de Aragón
  • THE INSTITUTE
    • General information
      • Welcome
      • History of the Institute
      • Organizational chart
      • Departments
        • Department 1: Functional organic materials
        • Department 2: Materials for energy and environment
        • Department 3: Physics of materials and nanosystems
        • Department 4: Bio-nano-medicine
        • Department 5: Multifunctional magnetic materials
      • Scientific Committee
      • Annual Reports
      • Welcome Handbook
      • Associations
    • Directory
    • Location and contact
  • RESEARCH
    • Research Areas
      • Area 1: Materials for energy
        and environment (MEM)
      • Area 2: Materials for biomedicine (BIO)
      • Area 3: Materials for information
        technology (MTI)
      • Area 4: New phenomena at the
        nanoscale (NFN)
      • Area 5: Synthesis, processing and scaling
        of advanced functional materials (SPE)
      • Area 6: Singular experimental
        technologies (TES)
    • Research Groups
    • Scientific publications
    • International projects
    • INMA scientific infrastructure
    • Microdevices Engineering Technical Unit (UTIM)
      • Structure UTIM
      • Catalog UTIM
      • Capabilities UTIM
      • Applications UTIM
    • INMA large scientific facilities
    • CEQMA Scientific-Technical Services
  • TRAINING
    • Master NANOMAT
    • Degree studies
    • Master studies
    • PhD studies
    • Internships
    • Scholarships and grants
    • Course of introduction to laboratory safety -SegurINMA
    • Research career path in Spain
  • JOB OFFERS
  • DISSEMINATION
    • Activities
      • General public
      • Schools and institutes
      • Special events
        • Researchers’ Night
        • Woman and science
        • Semana de la Ciencia
          Valle de Benasque
      • Cátedra SAMCA de Nanotecnología (EN)
      • LMA
    • Projects
    • Advising and training
    • Awards and distinctions
    • Multimedia
  • TRANSFER
    • Technological offer
      • Patents
      • Capabilities for industry
    • Transferred technology
    • Spin-offs
  • EQUALITY
    • Protocols and prevention against harassment
Instituto de Nanociencia y Materiales de Aragón
No Result
View All Result

Home » The ultra-thin magnetic material that could revolutionise the electronics of the future already features in the predictions of a multidisciplinary team of Spanish scientists

The ultra-thin magnetic material that could revolutionise the electronics of the future already features in the predictions of a multidisciplinary team of Spanish scientists

by INMAweb
27/07/2026
in News
0
El material magnético ultrafino que podría revolucionar la electrónica del futuro ya existe en las predicciones de un equipo multidisciplinar de científicos españoles

Researchers from the CSIC at INMA (CSIC–UNIZAR) have collaborated in a study that has identified a new family of two‑dimensional materials capable of maintaining their magnetic properties even above room temperature, a key requirement for the development of quantum technologies and more efficient electronic devices.

Zaragoza, 27th July. A team of researchers from the Aragon Nanoscience and Materials of Institute (INMA), a joint centre of the Spanish National Research Council (CSIC) and the University of Zaragoza (UNIZAR), has taken an important step towards developing materials that could underpin the next generation of electronic devices and quantum technologies. The work at INMA is led by CSIC physicist Mikhail Otrokov.

 

The study, published in Physical Review B, predicts the existence of a new family of two‑dimensional (2D) magnetic materials with properties far superior to those known to date. Although they have not yet been synthesised in the laboratory, calculations carried out by the team show that they could retain their magnetism even above room temperature, a challenge that for years has limited the development of this type of material.

The research was also carried out in collaboration with the Institute of Materials Science of Madrid (ICMM‑CSIC), the Materials Physics Centre (CFM, CSIC‑UPV/EHU) and the Donostia International Physics Center (DIPC).

 

Magnets only three atoms thick

The materials studied belong to the family of so‑called Janus materials, named after the two‑faced Roman god because they have a different composition on each of their surfaces.

These are monolayers barely three atoms thick which, according to simulations based on quantum‑mechanical calculations, could preserve their magnetic order between 370 and 410 kelvin (around 100 to 140 °C), well above room temperature.

Until now, the most widely studied two‑dimensional magnetic materials only retained these properties at extremely low temperatures, far from those required for real technological applications.

“One of the major challenges in two‑dimensional magnetism is precisely to obtain materials that maintain their magnetic properties under normal operating conditions. Our predictions indicate that this new family could overcome that barrier,” explains Mikhail Otrokov, CSIC researcher at INMA (CSIC‑UNIZAR) and one of the main authors of the study.

 

A step towards the future of electronics and quantum computing

The interest in these materials goes far beyond their magnetic behaviour. Their asymmetric structure gives rise to unique electronic properties that could be exploited to develop new technologies in strategic fields such as spintronics—a branch of electronics that uses the spin of electrons to process information with much lower energy consumption—or quantum computing.

Calculations carried out by the team indicate that these materials could facilitate the development of quantum states needed for future quantum computers and promote the emergence of the so‑called anomalous quantum Hall effect, a phenomenon that would allow electrical current to be transported with virtually no energy loss.

If confirmed experimentally, these materials would open the door to faster, more efficient electronic devices with far lower energy consumption than current technology.

 

The next challenge: synthesising them in the laboratory

Although the results are highly promising, the researchers emphasise that, for the moment, this is a theoretical prediction based on first‑principles simulations and atomic spin‑dynamics models.

The team has also verified that the proposed materials are structurally stable, increasing the likelihood that they can be synthesised in the future.

“Definitive confirmation will come when these materials can be fabricated and characterised experimentally. Our work provides a solid roadmap for other groups to attempt to obtain them in the laboratory,” Otrokov notes.

If these predictions are confirmed, this new family of materials could become one of the most promising candidates to drive the next generation of high‑efficiency quantum and electronic devices.

 

Severo Ochoa Centre of Excellence

The Aragon Nanoscience and Materials Institute (INMA) is the first in our Autonomous Community to obtain the Severo Ochoa excellence accreditation, awarded by the Spanish State Research Agency. This recognition entails funding of €4.5 million and five predoctoral contracts for the period 2024–2028.

INMA is a joint research institute of the Spanish National Research Council (CSIC) and the University of Zaragoza (UNIZAR). With around 300 members, it has more than 40 ongoing European projects and an annual average of 300 publications and €7 million obtained through competitive public programmes. It also works in collaboration with industry.

 

Bibliographic reference of the study:

“Chromium chalcohalide Janus monolayer ferromagnets with perpendicular magnetic anisotropy and high Curie temperature”
DOI: 10.1103/2jhq-f9z7
Physical Review B 113, 184425, 7th May 2026
M. Bosnar J.M. Lendinez, A.Yu. Vyazovskaya, I.Yu. Sklyadneva, R. Heid, S.V. Eremeev, U. Atxitia, S. Gallego, E.V. Chulkov, A. Arnau and M.M. Otrokov

Previous Post

Aragon marks forty years as a leading force in the materials science that is transforming the world

Últimas noticias destacadas

  • María José Martínez, CSIC scientist at INMA, receives the National Research Award
  • Ultrasmall platinum nanoparticles for radiation-enhanced cancer therapy
  • Paula Novella’s research (INMA) has been recognised as one of the best in the country at the CSIC-AEAC Awards for antimicrobial resistance

Últimas publicaciones científicas destacadas

  • Researchers at INMA develop new dyes to improve the performance of solar cells under artificial light
  • A new family of chemical products effective against antibiotic‑resistant pathogens identified
  • Researchers are developing a new technology to capture CO₂ directly from the air

Últimas novedades

  • The ultra-thin magnetic material that could revolutionise the electronics of the future already features in the predictions of a multidisciplinary team of Spanish scientists
  • Aragon marks forty years as a leading force in the materials science that is transforming the world
  • Boost your future in nanotechnology! Applications are now open for Cátedra SAMCA de Nanotecnología scholarships for the NanoMat Master’s programme (2026–2027 academic year)

Últimas noticias de divulgación

  • INMA participates in the 4th Conference on Advanced Materials in Spain (AMatS 2025)
  • NanoAsalto and Conrado Rillo, awarded by IPFest 2025
  • Quantum film series at the Zaragoza Film Library

Bienvenida

  • Dr Anton Stasyuk
  • Dr Olga Stasyuk
  • Dr Mónica Marro

    Campus San Francisco, Facultad de Ciencias
    C/ Pedro Cerbuna, 12 – 50009 Zaragoza (España)

    Tel.:(+34) 876 55 33 22
    webmasterinma@unizar.es

    INSTITUTO DE NANOCIENCIA Y MATERIALES DE ARAGÓN, Copyright © 2022 INMA, CSIC-UZ | Aviso Legal | Política de cookies  | webmasterinma@unizar.es

    No Result
    View All Result
    • THE INSTITUTE
      • General information
        • Welcome
        • History of the Institute
        • Organizational chart
        • Departments
        • Scientific Committee
        • Annual Reports
        • Welcome Handbook
        • Associations
      • Directory
      • Location and contact
    • RESEARCH
      • Research Areas
        • Area 1: Materials for energy
          and environment (MEM)
        • Area 2: Materials for biomedicine (BIO)
        • Area 3: Materials for information
          technology (MTI)
        • Area 4: New phenomena at the
          nanoscale (NFN)
        • Area 5: Synthesis, processing and scaling
          of advanced functional materials (SPE)
        • Area 6: Singular experimental
          technologies (TES)
      • Research Groups
      • Scientific publications
      • International projects
      • INMA scientific infrastructure
      • Microdevices Engineering Technical Unit (UTIM)
        • Structure UTIM
        • Catalog UTIM
        • Capabilities UTIM
        • Applications UTIM
      • INMA large scientific facilities
      • CEQMA Scientific-Technical Services
    • TRAINING
      • Master NANOMAT
      • Degree studies
      • Master studies
      • PhD studies
      • Internships
      • Scholarships and grants
      • Course of introduction to laboratory safety -SegurINMA
      • Research career path in Spain
    • JOB OFFERS
    • DISSEMINATION
      • Activities
        • General public
        • Schools and institutes
        • Special events
        • Cátedra SAMCA de Nanotecnología (EN)
        • LMA
      • Projects
      • Advising and training
      • Awards and distinctions
      • Multimedia
    • TRANSFER
      • Technological offer
        • Patents
        • Capabilities for industry
      • Transferred technology
      • Spin-offs
    • EQUALITY
      • Protocols and prevention against harassment

    © 2026 JNews - Premium WordPress news & magazine theme by Jegtheme.

    Este sitio web utiliza cookies para que usted tenga la mejor experiencia de usuario. Si continúa navegando está dando su consentimiento para la aceptación de las mencionadas cookies y la aceptación de nuestra política de cookies

    ACEPTAR
    Aviso de cookies