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Uni- and bidirectional rotation and speed control in chiral photonic micromotors powered by light

Journal Contribution - Journal Article

Abstract:Liquid crystalline polymers are attractive materials for untethered minia- ture soft robots. When they contain azo dyes, they acquire light-responsive actuation properties. However, the manipulation of such photoresponsive polymers at the micrometer scale remains largely unexplored. Here, uni- and bidirectional rotation and speed control of polymerized azo-containing chiral liquid crystalline photonic microparticles powered by light is reported. The rotation of these polymer particles is first studied in an optical trap experi- mentally and theoretically. The micro-sized polymer particles respond to the handedness of a circularly polarized trapping laser due to their chirality and exhibit uni- and bidirectional rotation depending on their alignment within the optical tweezers. The attained optical torque causes the particles to spin with a rotation rate of several hertz. The angular speed can be controlled by small structural changes, induced by ultraviolet (UV) light absorption. After switching o' the UV illumination, the particle recovers its rotation speed. The results provide evidence of uni- and bidirectional motion and speed control in light-responsive polymer particles and o'er a new way to devise light- controlled rotary microengines at the micrometer scale.
Published in: SMALL
ISSN: 1613-6829
Issue: 20
Volume: 19
Publication year:2023
Accessibility:Open