4.8 Review

Light-Directed Dynamic Chirality Inversion in Functional Self-Organized Helical Superstructures

期刊

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
卷 55, 期 9, 页码 2994-3010

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/anie.201505520

关键词

chiral liquid crystals; helix inversion; light-driven systems; molecular switches and motors

资金

  1. Air Force Office of Scientific Research
  2. Air Force Research Laboratory
  3. Department of Defense Multidisciplinary University Research Initiative
  4. National Aeronautics and Space Administration
  5. National Science Foundation
  6. Ohio Third Frontier

向作者/读者索取更多资源

Helical superstructures are widely observed in nature, in synthetic polymers, and in supramolecular assemblies. Controlling the chirality (the handedness) of dynamic helical superstructures of molecular and macromolecular systems by external stimuli is a challenging task, but is of great fundamental significance with appealing morphology-dependent applications. Light-driven chirality inversion in self-organized helical superstructures (i.e. cholesteric, chiral nematic liquid crystals) is currently in the limelight because inversion of the handedness alters the chirality of the circularly polarized light that they selectively reflect, which has wide potential for application. Here we discuss the recent developments toward inversion of the handedness of cholesteric liquid crystals enabled by photoisomerizable chiral molecular switches or motors. Different classes of chiral photoresponsive dopants (guests) capable of conferring light-driven reversible chirality inversion of helical superstructures fabricated from different nematic hosts are discussed. Rational molecular designs of chiral molecular switches toward endowing handedness inversion to the induced helical superstructures of cholesteric liquid crystals are highlighted. This Review is concluded by throwing light on the challenges and opportunities in this emerging frontier, and it is expected to provide useful guidelines toward the development of self-organized soft materials with stimuli-directed chirality inversion capability and multifunctional host-guest systems.

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