Plasmonic Photopatterning of Complex Molecular Orientations in Liquid Crystals

ORAL

Abstract

Aligning liquid crystal (LC) molecules in spatially non-uniform patterns are highly demanded for applications such as programmable origami and liquid crystal enabled nonlinear electrokinetics. We developed a high resolution projection photoalignment technique for patterning arbitrary LC alignment fields. The photoalignment is based on carefully engineered metasurfaces, or dubbed as plasmonic metamasks (PMMs). When illuminated by light, the PMMs generate patterns of both light intensity and polarization. By projecting the light transmitted through the PMMs onto liquid crystal cells coated with photosensitive materials, alignment patterns predesigned in polarization patterns of the PMMs can be imposed in liquid crystals. This technique makes the liquid crystal alignment a repeatable and scalable process similar to conventional photolithography, promising various applications.

*National Science Foundation CMMI-1436565

Authors

  • Yubing Guo

    • Liquid Crystal Institute, Kent State Univ - Kent
    • Kent State University
  • Miao Jiang

    • Liquid Crystal Institute, Kent State Univ - Kent
    • Kent State University
  • Chenhui Peng

    • Liquid Crystal Institute, Kent State Univ - Kent
    • Liquid Crystal Institute and Chemical Physics Interdisciplinary Program, Kent State University, Kent, OH 44242, USA
    • Kent State University
  • Kai Sun

    • Department of Material Science, University of Michigan
  • Oleg Yaroshchuk

    • Institute of Physics, National Academy of Sciences of Ukraine
  • Oleg Lavrentovich

    • Liquid crystal institute, Kent State University, Kent, Ohio 44242, USA
    • Liquid Crystal Institute, Kent State Univ - Kent
    • Kent State University
    • LCI, Kent State University
  • Qi-Huo Wei

    • Liquid Crystal Institute, Kent State Univ - Kent
    • Kent State University