The institute
FEMTO's news

Polymer-based nanowires

Molecules, salt and light :  an easy recipe to provide giant nanowires !

On-surface polymerization of organic precursors provides new possibilities to form highly-stable and atomically-defined nanostructures with desired properties. As emphasized by the Nobel Prize in Physics in 2016, awarded for early work in understanding topological phase transitions and topological phases of matter, the formation of artificial matter exhibiting properties controlled by their symmetry is very promising in nanoelectronics. This issue has been addressed by many research groups who performed on-surface reactions under ultra-high vacuum (UHV) conditions and on atomically clean single-crystal metal substrates. In this solvent-free environment, classical chemical reactions such as Ullmann type coupling, Glaser coupling, and many more have successfully been used to create well-defined and covalently bound organic 1D and 2D structures with dimensions of about 100 nm. However, for the basic building blocks of molecular circuitry to interconnect active devices there is a need to fabricate isolated nanowires with a length larger than 1 μm.

Other than length, the main limitations of structures fabricated to date for use in future nanoscale electronic and optical devices are (i) the use of metal substrates (for instance, leading to non-radiative quenching), (ii) the high number of defects in the formed covalent structures, and (iii) the side-products of some reactions that might remain on the substrate surface. This is why in our work, published in Nature Chemistry,  we overcome these identified obstacles by using a side product-free 1D polymerization on an alkali-halide surface. This new concept is driven by light-induced radical polymerization, a classic chemical reaction pathway, but one which has never been transferred onto the surface of bulk insulators so far. 

Noncontact atomic force microscopy was used to evaluate the geometrical structure of the fibres formed on the KCl substrate and to test both their mechanical and thermal stability. A deeper insight into the reaction mechanism and the energy barriers involved is obtained by comparing the experimental observations with calculations, which revealed the strong localization of the active biradicals at the fibre ends.

We hope that with our work we will ‘initiate’ a completely new way to synthesize organic compounds on surfaces, especially on insulating substrates.

Contact : Frédéric Chérioux

Link

  • FEMTO-ST conclut un partenariat pour la recherche avec PSA

    Le 19 mai dernier, la Région Bourgogne Franche-Comté et l’institut FEMTO-ST (par l’intermédiaire de ses établissements de tutelle)a signé une convention de partenariat avec le groupe PSA Peugeot Citroën en vue de renforcer les collaborations déjà existantes de recherche et de transfert de technologies.

    Read more
  • Prix de la meilleure thèse en Génie Electrique pour Zhixue Zheng

    Décerné pour les années 2014 et 2015 conjointement par la société savante Club EEA et le GdR du CNRS SEEDS qui rassemble tous les laboratoires de Génie Electrique français, ce prix vient récompenser les travaux menés par Zhixue Zheng au sein du département ENERGIE de FEMTO-ST, dans le cadre de la fédération FCLab, sur le diagnostic en ligne de pile à combustible de type PEMFC.

    Read more
  • FACS 2016 - The 13th International Conference on Formal Aspects of Component Software

    The DISC department, organizer of the 13th International Conference on FACS.

    Read more
  • International Summer School on PEM Fuel Cell Systems

    FEMTO-ST, FC Lab et le LabEx ACTION organisent l'école d'été "From Diagnostics to Fault Tolerant Control of PEM Fuel Cell Systems" du 4 au 8 juillet 2016 à Belfort.

    Read more
  • FACS 2016 - The 13th International Conference on Formal Aspects of Component Software

    Le département du DISC, organisateur de la 13ème Conférence Internationale FACS.

    Read more
  • Colloque "Fatigue et durabilité des composites biosourcés"

    Le département Mécanique Appliquée organise le colloque intitulé Fatigue et durabilité des composites biosourcés. Il se tiendra à Besançon du 25 au 27 mai 2016.

    Read more
  • Student Poster Award à la conférence IEEE International Frequency Control Symposium,

    Etienne Vaillant, Doctorant au département Temps-Fréquence de FEMTO-ST a obtenu un Student Poster Award à la conférence IEEE International Frequency Control Symposium, qui s'est tenue à New-Orleans, Louisiana (USA) du 9 au 12 mai.

    Read more
  • Nicolas Chaillet élu président de la COMUE Université Bourgogne Franche-Comté

    Le conseil d’administration de la COMUE Bourgogne Franche-Comté, réuni le 25 avril, a élu à sa présidence Nicolas Chaillet pour un mandat de 4 ans. Actuellement professeur à l’Université de Franche-Comté et directeur du laboratoire FEMTO-ST, Nicolas Chaillet démissionne donc de ses fonctions à FEMTO-ST.
    Le directeur adjoint, Laurent Larger, reprend la direction par intérim.

    Read more
  • Special issue of Comptes Rendus Physique on phononic crystals

    The May 2016 issue of Comptes Rendus Physique (an international peer-reviewed journal of the French Academy of Sciences), is devoted to phononic crystals. This special issue was coordinated by Vincent Laude.

    Read more
  • Numéro spécial des Comptes Rendus Physique sur les cristaux phononiques

    À lire : numéro spécial des Comptes Rendus Physique (revue internationale de l'Académie des Sciences) consacré aux cristaux phononiques et coordonné par Vincent Laude.

    Read more