Molecules (Sep 2022)

Confinement-Induced Fabrication of Liquid Crystalline Polymeric Fibers

  • Jae Gwang Kim,
  • Jae Gyeong Lee,
  • Jeong Jae Wie

DOI
https://doi.org/10.3390/molecules27175639
Journal volume & issue
Vol. 27, no. 17
p. 5639

Abstract

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In aqueous media, liquid crystalline droplets typically form spherical shapes in order to minimize surface energy. Recently, non-spherical geometry has been reported using molecular self-assembly of surfactant-stabilized liquid crystalline oligomers, resulting in branched and randomly oriented filamentous networks. In this study, we report a polymerization of liquid crystalline polymeric fibers within a micro-mold. When liquid crystal oligomers are polymerized in freely suspended aqueous media, curvilinear and randomly networked filaments are obtained. When reactive liquid crystalline monomers are oligomerized in a micro-channel, however, highly aligned linear fibers are polymerized. Within a top-down microfabricated mold, a bottom-up molecular assembly was successfully achieved in a controlled manner by micro-confinement, suggesting a unique opportunity for the programming architecture of materials via a hybrid approach.

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