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An engineered coccolith-based hybrid that transforms light into swarming motion

  • University of Galway
  • University of Basque
  • RWTH Aachen University
  • University College Dublin
  • Grigore Ghica Voda Alley 41A
  • University of Basel

Research output: Contribution to a Journal (Peer & Non Peer)Articlepeer-review

3 Citations (Scopus)

Abstract

Translating energy into swarming motion for miniature entities remains a challenge. This translation requires simultaneously breaking the symmetry of the system to enable locomotion and a coupling effect between the objects that are part of the population to induce the collective motion. Here, we report on Robocoliths, engineered Emiliania huxleyi (EHUX) coccolith-based miniature hybrid entities capable of swarming behavior. EHUX coccoliths are characterized by an asymmetric morphology that allows breaking symmetry, playing a central role in generating a net force and directed motion. Their activation with the bioinspired material polydopamine not only endows the asymmetric coccoliths with advanced functionalities, such as thermal- and energy-harvesting responsiveness under visible light exposure to display a collective behavior (i.e., swarming), but it also provides a functional surface from which antifouling polymer brushes are grown. In this context, Robocoliths pave the way for the next generation of multifunctional swarming bio-micromachines.
Original languageEnglish (Ireland)
Article number100373
JournalCell Reports Physical Science
Volume2
Issue number3
DOIs
Publication statusPublished - 1 Mar 2021

Keywords

  • Robocoliths
  • antifouling polymer brushes
  • coccolith
  • light-driven
  • polydopamine
  • polydopamine-coccolith hybrids
  • swarming micro-objects
  • temperature-generating

Authors (Note for portal: view the doc link for the full list of authors)

  • Authors
  • Lomora, M.; Larranaga, A.; Rodriguez-Emmenegger, C.; Rodriguez, B.; Dinu, IA; Sarasua, J-R.; Pandit, A.

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