The institute
FEMTO's news

You are here

Kagomé structures for quantum technologies

Quantum technologies open up promising prospects, but require the development of new materials with remarkable properties.

Context :
Kagome graphene is a fascinating material made up of carbon triangles arranged in a lattice structure. Its unique electronic properties, such as the presence of flat bands and Dirac points, make it a promising candidate for quantum materials research. These characteristics can give rise to strong electronic correlations and exotic magnetic states. However, due to its intrinsic semiconducting nature, Kagome graphene lacks tunability under an electric field, limiting its potential for applications in electronics and spintronics.

Breakthrough discovery :
A team of researchers from École Polytechnique de Montréal (Canada), the University of Basel (Switzerland), and FEMTO-ST (France) has successfully modified Kagome graphene by introducing π-radicals, creating localized magnetic states.
Their approach involved synthesizing a carbonyl (C=O)-functionalized version of Kagome graphene, which was then exposed to atomic hydrogen. A subsequent thermal treatment transformed the carbonyl groups into CH radicals, effectively generating unpaired electrons that induce magnetism.
Advanced characterization techniques, including atomic force microscopy (AFM) and scanning tunneling spectroscopy (STS), confirmed the formation of these magnetic states and the emergence of new low-energy electronic states.

Scientific impact and future perspectives :
This study demonstrates that chemical functionalization of Kagome graphene allows the creation of tunable electronic states, opening new possibilities for investigating topology, magnetism, and electron correlations. By increasing the density of radicals, the researchers observed the reappearance of Dirac cones and flat bands near the Fermi level, suggesting that a fully functionalized version of Kagome graphene could become metallic—a breakthrough that was previously challenging to achieve.
These findings lay the foundation for advanced quantum materials with applications in spintronics and quantum computing. Controlling the density and distribution of radicals could lead to nano-scale spin manipulation, a key step toward the development of next-generation electronic devices.
The next phase of research will focus on optimizing the synthesis process to achieve a fully functionalized Kagome graphene, while further exploring the interaction between these new electronic states and phenomena such as superconductivity.

Publications and futher information :
This work has been published in ACS Nano, featuring on the cover of the February 2025 issue
open acess article : On-Surface Synthesis and Characterization of Radical Spins in Kagome Graphene
Authors : Rémy Pawlak, Khalid N. Anindya, Outhmane Chahib, Jung-Ching Liu, Paul Hiret, Laurent Marot, Vincent Luzet, Frank Palmino, Frédéric Chérioux, Alain Rochefort, and Ernst Meyer
DOI: 10.1021/acsnano.4c15519

Contacts :
Dr Frédéric CHERIOUX, frederic.cherioux@femto-st.f
Dr Rémy PAWLAK, remy.pawlak@unibas.ch

  • Paper prize at the international conference VPPC 2014

    At the International IEEE "Vehicle Power and Propulsion Conference" conference held in Coimbra, Portugal from 27 to 30 October 2014, “Hybrid & Fuel Cell Systems” Research Team of Femto-ST Institute won the Paper Prize for the paper titled “Energy management of an hybrid electrical vehicule in degraded operation”

    Read more
  • A book about flexible robotics co-written by Nicolas Chaillet

    The objective of the book "Flexible Robotics: Applications to Multiscale Manipulations" is to provide those interested in the field of flexible robotics with an overview of several scientific and technological advances in the practical field of robotic manipulation.

    Read more
  • Nonlinear Optics and Supercontinuum Symposium

    A one day “Nonlinear Optics and Supercontinuum Symposium” will be held on Friday 20 September in the Amphi FEMTO in honour of Professor Chinlon Lin who will be here in Besançon during this time.

    Read more
  • European Time and Frequency Seminar (EFTS)

    The European Frequency an Time Seminar (EFTS) will be held from Monday, August 16 to friday, August 30 2013.

    Read more
  • Two ERC Grants for FEMTO-ST Institute in 2011

    Prof John DUDLEY & Dr Yanne CHEMBO from the Optics Depmarment of FEMTO-ST Institute (UMR 6174 CNRS-Université de Franche-Comté) have both received a financial Grant from the European Research Council (ERC) to support the top level scientific excellence of their research projects

    Read more
  • Michel planat makes the Insights News of the Journal of Physics A: Mathematical and Theoretical

    Michel Planat's Insights news article "Quantum computing with Riemann hypothesis" is now available on the journal's website and can be viewed at http://iopscience.iop.org/1751-8121/labtalk-article/45421. This news article is based on the recent paper published by the Journal of Physics A: Mathematical and Theoretical.

    Read more
  • Summer school in Microrobotics and Self-assembly for hybrid MEMS

    The general context of the summer school concerns the micromanipulation and assembly of such complex microsystems. From the state-of-the-art, integration technologies for heterogeneous microsystems are based on Microrobotics or Self-assembly approaches.

    Read more
  • 4M conference 2010

    Co-organized by FEMTO-ST, 4 M conference will take place in Oyonnax (France) from November 17th to 19th.

    Read more
  • d-MEMS 2010 – Besançon June 28-29th

    FEMTO-ST and LIFC organize the 1 st workshop on design, control & software implementation for distributed MEMS

    Read more
  • Vehicular Power Propulsion Conference - Lille 2010

    FEMTO-ST co-organize The 2010 IEEE Vehicle Power and Propulsion Conference (VPPC) in Lille
    For more informations : http://vppc2010.univ-lille1.fr/

    Read more

Pages