Published December 7, 2006 | Version v1
Journal article

Organosiloxane liquid crystals for fast-switching bistable scattering devices

  • 1. Centre of Molecular Materials for Photonics and Electronics, Electrical Engineering Division, University of Cambridge, 9 J J Thomson Avenue, Cambridge CB3 0FA (United Kingdom)

Description

In this paper, we investigate the dependence of the bistable electro-optic response of organosiloxane based smectic A liquid crystals on key material properties; the modes are optically scattering (<100 Hz) and clear (>1 kHz), respectively. The scattering mode is generated by motion of doped ionic species and is dependent upon the conductivity anisotropy of the liquid crystal; the clear mode occurs through dielectric coupling at frequencies sufficient to inhibit ionic conduction. The pure siloxane liquid crystals exhibit unusually high anisotropic ionic conductivities; the ratio of the components parallel and perpendicular to the director is up to 0.005; for analogous non-siloxane based liquid crystals the value is ∼0.5. However, the pure materials possess low dielectric anisotropy compared with similar polar liquid crystals, e.g. 0.8 compared with 8.4. Based upon these observations, we prepare exemplar mixtures of organosiloxane with 4-(ω-pentyloxy)-4'-cyanobiphenyl (5OCB) as a dielectric additive. These systems show beneficial properties: highly anisotropic conductivity coupled with an increase in the dielectric anisotropy. As a result, the electro-optic responses of these mixtures show a significant improvement upon the pure compounds; for example, for the 49% w/w mixture it is found that the response time of the optically clear mode is significantly reduced, e.g. from 130 ms (at 280 V rms) to 5 ms at an applied voltage of 102 V rms. We conclude that simple mixtures, using an organosiloxane as the bulk component, have much promise for use in bistable, electro-optic storage and display devices

Availability note (English)

Available online at http://stacks.iop.org/0022-3727/39/4948/d6_23_008.pdf or at the Web site for the Journal of Physics. D, Applied Physics (ISSN 1361-6463) http://www.iop.org/

Additional details

Publishing Information

Journal Title
Journal of Physics. D, Applied Physics
Journal Volume
39
Journal Issue
23
Journal Page Range
p. 4948-4955
ISSN
0022-3727
CODEN
JPAPBE