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Updated: Sep 2, 2026

Light-driven Molecular Motors on Surfaces for Single Molecular Imaging
Published on: March 13, 2019
Efficient molecular motors in liquid crystal networks enable the integration of fluorescence with large
Guiying Long1,2, Jiahui Meng2, Alexander Ryabchun3
1Stratingh Institute for Chemistry, University of Groningen, Nijenborgh 3, 9747 AG, Groningen, The Netherlands.
Abstract:
Liquid crystal polymer networks (LCPNs) exhibit remarkable light-responsive actuation, yet the molecular-level design rules governing their performance remain elusive. Here, we develop a series of molecular motor-based photo-responsive units with tunable rigidity, and different substituents, enabling precise modulation of LCPN mechanics and photo-responsive behavior. By systematic study and comparing these motors with conventional azobenzene and second-generation molecular motors, we establish clear structure-property relationships that link molecular design to macroscopic actuation efficiency and network stiffness. Notably, our motor-integrated LCPNs also exhibit intrinsic fluorescence, enabling shape-encoded pattern visualization without the need for additional fluorescent molecules. This multifunctional liquid crystal-motor hybrid system integrates light-induced actuation, mechanical tunability, and fluorescence signaling, offering design principles for next-generation soft actuators and intelligent photonic devices.

