idw – Informationsdienst Wissenschaft

Nachrichten, Termine, Experten

Grafik: idw-Logo
Grafik: idw-Logo

idw - Informationsdienst
Wissenschaft

Science Video Project
idw-Abo

idw-News App:

AppStore

Google Play Store



Instanz:
Teilen: 
19.07.2024 10:00

Growth control of microscopic bipeds with magnetic loops

Anja-Maria Meister Pressestelle
Universität Bayreuth

    Researchers at the University of Bayreuth have developed a new method for controlling the growth of physical micro-runners. They used an external magnetic field to assemble paramagnetic colloidal spheres - i.e. only magnetic due to external influences - into rods of a certain length. Colloidal particles are tiny particles in the micro- or nanometer range that can be used in medicine as carriers of biochemicals. These so-called microscopic bipeds change their behavior of their own accord as soon as they are fully grown: They then decide to run away. No external intervention is necessary for this. Nevertheless, their behavior is not random, but follows the experimenters' plan.

    The research results have now been published in the renowned journal "Nature Communications". In this work, Jonas Elschner, Farzaneh Farrokhzad, Prof. Dr. Daniel de las Heras and Prof. Dr. Thomas Fischer from the Department of Experimental Physics at the University of Bayreuth have developed a microscopic factory for small runners: a biped factory. There, microspheres are connected to make bipeds by means of magnetic forces and leave the factory as soon as they are fully grown.

    This is achieved by means of a magnetic metamorphosis pattern of oppositely magnetized domains that are arranged differently depending on their position. Paramagnetic microspheres are placed on the pattern and an external time-dependent magnetic loop is applied to the system. This is chosen so that the particles move for one or more spatial periods during a temporal period. With a suitably designed loop, different particles can even be transported in different directions so that they meet and combine to form rods of different lengths. As soon as these have grown to the desired length, they leave the factory independently and run across the pattern as bipeds.

    In experiments, the group was able to use this system to produce bipeds of six different lengths. Videos of this can be found on the page of the article linked below.

    The results are the result of a collaboration between the University of Bayreuth, the University of Kassel and the Polish Academy of Sciences.


    Wissenschaftliche Ansprechpartner:

    Prof. Dr. Thomas Fischer
    Experimental Physics University of Bayreuth
    Phone: +49 (0) 921 55 33 42
    Mail: Thomas.fischer@uni-bayreuth.de


    Originalpublikation:

    Elschner, J., Farrokhzad, F., Kúswik, P. et al. Topologically controlled synthesis of active colloidal bipeds. Nat. commun. 15, 5735 (2024); DOI: https://doi.org/10.1038/s41467-024-50023-7


    Bilder

    Merkmale dieser Pressemitteilung:
    Journalisten, Wissenschaftler
    Chemie, Medizin, Physik / Astronomie
    überregional
    Forschungsergebnisse
    Englisch


     

    Hilfe

    Die Suche / Erweiterte Suche im idw-Archiv
    Verknüpfungen

    Sie können Suchbegriffe mit und, oder und / oder nicht verknüpfen, z. B. Philo nicht logie.

    Klammern

    Verknüpfungen können Sie mit Klammern voneinander trennen, z. B. (Philo nicht logie) oder (Psycho und logie).

    Wortgruppen

    Zusammenhängende Worte werden als Wortgruppe gesucht, wenn Sie sie in Anführungsstriche setzen, z. B. „Bundesrepublik Deutschland“.

    Auswahlkriterien

    Die Erweiterte Suche können Sie auch nutzen, ohne Suchbegriffe einzugeben. Sie orientiert sich dann an den Kriterien, die Sie ausgewählt haben (z. B. nach dem Land oder dem Sachgebiet).

    Haben Sie in einer Kategorie kein Kriterium ausgewählt, wird die gesamte Kategorie durchsucht (z.B. alle Sachgebiete oder alle Länder).