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Article

Increasing rewriting speed of optically driving liquid crystal display by process optimisation

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Pages 151-157 | Received 16 Apr 2018, Accepted 21 May 2018, Published online: 26 Jun 2018

References

  • Murauski A, Chigrinov V, LI X, et al. Optically rewritable LC display with a high contrast and long life time. IDW’05. 2005;1:131–132.
  • Li X, Au PT, Xu P, et al. Flexible photoaligned optically rewritable LC display. SID’06. 2006;37:783–785.
  • Muravsky A, Murauski A, Li X, et al. High efficiency optical rewritable device. IDW’06. 2006;6:609–612.
  • Muravsky A, Murauski A, Li X, et al. Optical rewritable liquid crystal alignment technology. J SID. 2007;15:267–273.
  • Muravsky A, Murauski A, Chigrinov V, et al. Novel optical rewritable electronic paper. IDW’07. 2007; 273–276.
  • Muravsky A, Murauski A, Chigrinov V, et al. New properties and applications of rewritable azo-dye photoalignment. J SID. 2008;16:927–931.
  • Muravsky A, Murauski A, Chigrinov V, et al. Optical rewritable electronic paper with fluorescent dye doped liquid crystal. SID’08. 2008; 39: 915–918.
  • Muravsky A, Murauski A, Chigrinov V, et al. Light printing of grayscale pixel images on optical rewritable electronic paper. Jpn J Appl Phys. 2008;47:6347–6353.
  • Muravsky A, Murauski A, Chigrinov V, et al. Optical rewritable electronic paper. IEICE Trans Electron. 2008;91:1576–1580.
  • Yu Q, Murauski A, Du T, et al. Light printer for optical rewritable electronic paper. SID’09. 2009; 1184–1186.
  • Muravsky A, Murauski A, Li X, et al. High twist angles for NLC without chiral dopants. ILCC; SURFP-24. 2006.
  • Muravsky A, Murauski A, Li X, et al. UV-LED switching of optically re-writable LC display. ILCC; DEVIP-39. 2006
  • Blinov LM, Kozlovsky MV, Cipparrone G. Photochromism and holographic grating recording on a chiral side-chain liquid crystalline copolymer containing azobenzene chromophores. Chem Phys. 1999;245:473–485.
  • Chigrinov VG. Liquid crystal devices: physics and applications. Boston: Artech House; 1999.
  • Schadt M, Schmitt K, Kozinkov V, et al. Surface-induced parallel alignment of liquid crystals by linearly polymerized photopolymers. Jpn J Appl Phys. 1992;1(31):2155–2164.
  • Chigrinov VG, Kozenkov VM, Kwok HS. Photoalignment of liquid crystalline materials: physics and applications. Chichester: Series in Display Technology, Wiley; 2008.
  • Chigrinov VG, Kozenkov VM, Kwok HS. Optical applications in photoaligning. Bristol: Institute of Physics; 2003. p. 201–244.
  • Chigrinov VG, Muravski A, Kwok HS. Anchoring properties of photo-aligned azo-dye materials. Phys Rev E. 2003;68:061702.
  • Kiselev AD, Chigrinov VG, Kwok HS, et al. Biaxiality effects in kinetics of photoinduced orientational structures in azo-dye films. IDW’08. 2008; 573–574.
  • Blinov LMChigrinov VG., Electrooptic effects in liquid crystal materials. Phys. Today. 1995;48(4):85-87.
  • Demus D, Goodby J, Gray GW, et al. Hand book of liquid crystals. Vol. 1. Wiley –Vch, Fundamentals; Weinheim; 1998.
  • Pasechnik SV, Chigrinov VG, Shmeliova DV. Liquid crystals: viscous and elastic properties. Wiley-Vch; Mörlenbach; 2009.
  • Wang HY, Wu ST. Liq Cryst. 2006;33(1):91–98.
  • Yang DK, Wu ST. Fundamentals of liquid crystal devices. Braishfield, Wiley; 2006.

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