Large range electrically-induced reflection notch tuning in polymer stabilized cholesteric liquid crystals
Author:
Affiliation:
1. Air Force Research Laboratory
2. Materials and Manufacturing Directorate
3. Wright-Patterson Air Force Base
4. Ohio
5. USA
6. Department of Physics
7. University of Colorado
8. Boulder
Abstract
This communication reports large magnitude (exceeding 1500 nm) and reversible reflection notch tuning in polymer stabilized cholesteric liquid crystals (PSCLCs) formulated with negative dielectric anisotropy (−Δε) hosts upon application of a direct current (DC) field.
Funder
Air Force Research Laboratory
Publisher
Royal Society of Chemistry (RSC)
Subject
Materials Chemistry,General Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2015/TC/C5TC01320H
Reference44 articles.
1. H.-S. Kitzerow and C.Bahr, Chirality in Liquid Crystals, Springer-Verlag, New York, 2001
2. S.-T. Wu and D.-k.Yang, Reflective Liquid Crystal Displays, Wiley, West Sussex, UK, 2001
3. L.-C. Chien and T.Doi, U. S. Patent, 7,090,901, 2006
4. The switching properties of chiral nematic liquid crystals using electrically commanded surfaces
5. Deformations induced by d.c. electric field in cholesteric liquid crystals
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