The institute
FEMTO's news

Nanorobotics of the future: FEMTO-ST enters the 4th dimension

For the first time, nanorobotic structures have been realized by folding in 3 dimensions a multilayer membrane and proposing their actuation by an electro-thermo mechanical principle.

Published in "Advanced Materials", this work is in line with the latest innovations of FEMTO-ST, and more particularly of the members of the CMNR - Centre de Micro et Nano Robotique - which has just been created and in which we find the µRobotex platform, initially labelled in the framework of the PIA I and which became TIRREX, in January 2021, in the framework of the PIA III.

 This article is based on the innovations tha led to the fabrication of a micro-house by origami in 3 dimensions from a silica membrane as welle as the  world record of the smallest volume character ever animated in stop motion.

In this new experiment, the challenge goes far beyond the origami folding of the micro-house, since the work allows to realize for the first time nanorobotic structures (in the article, a clamp is used as a demonstrator) of dimensions smaller than 100 µm by folding in 3 dimensions a multilayer membrane. The actuation of these 3D structures is performed by an electro-thermo-mechanical principle which leads to what is called, in this microtechnical context, "the 4th dimension", i.e. the actuation in addition to the fabrication of a 3D structure. The challenge successfully achieved is significant: not only is it difficult to bend the multilayer structure by focused ion bombardment, mostly composed of silica, at 90° but also to integrate the actuation of the fingers of a new microgripper by innovative bending at this scale.

One of the scientific contributions of the work published in this article lies in the detailed understanding of the physical phenomena occurring during bidirectional folding assisted by focused ion bombardment (FIB). This is the result of intense collaborations useful for the multiphysical modeling of phenomena specific to multidisciplinary work such as nanorobotics and has led to the proposed technology being reproducible, mastered and applicable to many other problems than robotics.

All the work has been done at FEMTO-ST, by researchers of the AS2M department, from design to functional tests, including modeling and of course manufacturing. The fabrication steps of the silica membranes and the aluminium electrode deposits according to predefined patterns have been realized in the FEMTO-ST MIMENTO plant from masks designed in-house. The ion beam machining leading to the 3D and 4D structures was performed on the µRobotex platform. All the steps of functional tests, visualization of finger deformations and measurements of amplitudes and aperture accuracies were also performed on the µRobotex platform.

This work responds to a growing need for systems that allow gripping on small scales, because in the race to miniaturize systems and components, it is essential to have high-performance, perfectly controllable, precise, reproducible and robust gripping means over time. This type of gripper has been created to allow the manipulation of isolated molecules (10 to 50 nm), viruses (20 to 200 nm), nanotubes (25 to 150 nm), bacteria (1 to 10 µm), globules (1 to 3 µm), micro and nano components of electrical and optical circuits The application example described in the paper is a gripper used to move a stretched optical fiber with a diameter of 6 to 8 µm.

To push the limits of this research result, it would now be interesting to integrate a means of measuring the forces applied to the manipulated objects. This information would allow to increase the dexterity of manipulation and to extend the range of grasped objects by having the possibility to grasp soft materials without damaging them. For specific applications, it would also be possible to functionalize the fingertips of the microgrips in order to selectively pick up certain objects in certain solutions.

https://doi.org/10.1002/adma.202103371

Acknowledgements :

This work was made possible thanks to the involvement of many staff members of the FEMTO-ST institute, its supervisory bodies (CNRS, UBFC, UFC, ENSMM), its technology centers (MIMENTO, Rénatech network and Robotex/Tirrex) and the financial support of the Burgundy Franche-Comté region as well as the French National Research Agency, in particular via the EUR Eiphi project "Nanofolding".

  • essai

    dhhsdkhfhsdfiuzersdfsdf

    Read more
  • Erik Vargas Rojas obtient un prix dans la catégorie "doctorants" à la conférence ASME 2013

    Erik Vargas Rojas a obtenu un prix catégorie "doctorants" au 21ème Rudy Scavuzzo Student Paper symposium and Competition à la conférence ASME 2013 Pressure Vessels & Piping Division Conference 2013 qui s'est tenu à Paris du 14 au 18 juillet dernier.

    Read more
  • Thibaut Sylvestre reçoit le prix Fabry de Gramont 2012

    23 ans après le dernier lauréat franc-comtois, Thibaud Sylvestre, responsable de l'équipe Optique Non Linéaire du Département d'Optique de FEMTO-ST,vient de se voir décerner le Prix Fabry De Gramont 2012 de la Société Française d'Optique pour ses nombreux travaux et résultats marquants en optique non linéaire sur fibre.

    Read more
  • La spin-off frec|n|sys lauréat CNCE 2013

    Sylvain Ballandras,ancien chercheur au département temps-fréquence de l’institut FEMTO-ST est l’un des lauréats du 15ème concours national d’aide à la création d’entreprises de technologies innovantes du ministère de l'Enseignement supérieur et de la Recherche, en catégorie création-développement.

    Read more
  • FEMTO-ST anime les nanosciences

    Le groupe NanoSciences a réalisé un film d’animation 3D illustrant sa thématique de recherche au sein du département MN2S.

    Read more
  • FEMTO-ST lance un nouveau centre de développement technologique

    En lien direct avec l’industrie, FEMTO Engineering se propose d’être en Franche-Comté un nouveau centre de développement technologique issu de la recherche de l’Institut FEMTO-ST dans les domaines de la microfabrication et du micro-usinage, du temps-fréquence, de l’énergie et
    des « Smart Systems".

    Read more
  • FEMTO-ST en séminaire scientifique à Besançon

    Ce mercredi 26 juin FEMTO-ST organise à Besançon, dans les locaux de la Maison de l’Economie, son deuxième séminaire scientifique.
    Cette manifestation a notamment l'objectif de cultiver l'interdisciplinarité, la richesse scientifique et les missions de valorisation et de transfert propres à un institut de recherche en ingénierie.

    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
  • Huihui LU récompensé par le gouvernement chinois pour sa thèse à FEMTO-ST

    Huihui LU a reçu le prix d’excellence académique du gouvernement chinois pour sa thèse menée entre 2009 et 2012 au sein du département d’Optique de FEMTO-ST dans le cadre d'une bourse accordée par le conseil régional de Franche-Comté.

    Read more
  • Atelier SMYLE 2013 - Intelligences dans les smart systems

    L’Atelier "SMYLE" ‘Intelligences dans les smart systems’ aura lieu les 12 et 13 septembre 2013 dans les locaux de l’ENSMM à Besançon.

    Read more