4.8 Article

Chiral liquid crystal colloids

Journal

NATURE MATERIALS
Volume 17, Issue 1, Pages 71-+

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/NMAT5032

Keywords

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Funding

  1. US Department of Energy, Office of Basic Energy Sciences, Division of Materials Sciences and Engineering [ER46921]
  2. University of Colorado Boulder [DE-SC0010305]
  3. American Chemical Society Petroleum Research Fund Grant [PRF 54095-ND7]

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Colloidal particles disturb the alignment of rod-like molecules of liquid crystals, giving rise to long-range interactions that minimize the free energy of distorted regions. Particle shape and topology are known to guide this self-assembly process. However, how chirality of colloidal inclusions affects these long-range interactions is unclear. Here we study the effects of distortions caused by chiral springs and helices on the colloidal self-organization in a nematic liquid crystal using laser tweezers, particle tracking and optical imaging. We show that chirality of colloidal particles interacts with the nematic elasticity to predefine chiral or racemic colloidal superstructures in nematic colloids. These findings are consistent with numerical modelling based on the minimization of Landau-de Gennes free energy. Our study uncovers the role of chirality in defining the mesoscopic order of liquid crystal colloids, suggesting that this feature may be a potential tool to modulate the global orientated self-organization of these systems.

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