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Articles

Transflective blue-phase liquid crystal display with polar opposite electrodes

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Pages 1535-1539 | Received 10 Oct 2017, Accepted 13 Mar 2018, Published online: 22 Mar 2018

References

  • Hisakado Y, Kikuchi H, Nagamura T, et al. Large electro-optic Kerr effect in polymer-stabilized liquid-crystalline blue phases. Adv Mater. 2005;17:96–98.
  • Kikuchi H, Yokota M, Hiskado Y, et al. Polymer-stabilized liquid crystal blue phases. Nat Mater. 2002;1:64–68.
  • Yan J, Cheng HC, Gauza S, et al. Extended Kerr effect of polymer-stabilized blue-phase liquid crystals. Appl Phys Lett. 2010;41:87–89.
  • Ge Z, Gauza S, Wu ST, et al. Electro-optics of polymer-stabilized blue phase liquid crystal displays. Appl Phys Lett. 2009;94:101104.
  • Rao L, Cheng HC, Wu ST. Low voltage blue-phase LCDs with double-penetrating fringe fields. J Disp Technol. 2010;6:287–289.
  • Ge Z, Rao L, Wu ST, et al. Modeling of blue phase liquid crystal displays. J Disp Technol. 2009;5:250–256.
  • Rao L, Ge Z, Lee SH, et al. Low voltage blue phase liquid crystal displays. Appl Phys Lett. 2009;95:231101.
  • Yoshida H, Kobashi J. Flat optics with cholesteric and blue phase liquid crystals. Liq Cryst. 2016;43:1909–1919.
  • Li JW, Du WS, Wu ST, et al. Enlarging the Kerr constant of polymer-stabilised blue phases with a novel chiral monomer. Liq Cryst. 2016;43:937–943.
  • Chen KM, Gauza S, Xianyu H, et al. Submillisecond gray-level response time of a polymer stabilized blue phase liquid crystal. J Disp Technol. 2010;6:49–51.
  • Lee JH, Zhu X, Wu ST. Novel color-sequential transflective liquid crystal displays. J Disp Technol. 2007;3:2–8.
  • Mori M, Hatada T, Ishikawa K, et al. Mechanism of color breakup in field-sequential color projectors. J Soc Inf Disp. 1999;7:257–259.
  • Kerr J. A new relation between electricity and light: dielectrified media birefringent. Philos Mag. 1875;50:337–348.
  • Chen KM, Gauza S, Xianyu H, et al. Hysteresis effects in blue-phase liquid crystals. J Disp Technol. 2010;6:318–322.
  • Zhu XY, Ge ZB, Wu ST, et al. Transflective liquid crystal displays. J Disp Technol. 2005;1:15–29.
  • Kim HY, Ge Z, Wu ST, et al. Wide-view transflective liquid crystal display for mobile applications. App Phys Lett. 2007;91:231108.
  • Du T, Yao ST, Chigrinov VG, et al. Single-cell-gap transflective liquid-crystal display and the use of photo alignment technology. J Soc Inf Disp. 2010;18:421–426.
  • Li Y, Wu ST. Transmissive and transflective blue-phase LCDs with enhanced protrusion electrodes. J Disp Technol. 2011;7:359–361.
  • Zhou F, Cui JP, Wang QH, et al. A single-cell-gap transflective display using a blue-phase liquid crystal. J Disp Technol. 2011;7:170–173.
  • Algorri JF, Urruchi V, Sánchez-Pena JM. Reflective sidewall electrodes for low voltage and high transmittance blue-phase liquid crystal displays. Liq Cryst. 2015;42:941–946.
  • Guo YQ, Fu MZ, Ren YX, et al. Low-voltage blue-phase liquid crystal display with single-penetration electrodes. Liq Cryst. 2017;44:2321–2326.
  • Song DH, Kim KH, Yoon TH. High-transmittance in-plane switching liquid crystal display device driven by three-level voltages. J Soc Inf Disp. 2013;21:29–33.
  • Sun YB, Zhao YL, Li YF, et al. Optimisation of in-plane-switching blue-phase liquid crystal display. Liq Cryst. 2014;41:717–720.
  • Tian LL, Chu F, Dou H, et al. A transflective polymer-stabilised blue-phase liquid display with partitioned wall-shaped electrodes. Liq Cryst. 2018;1–5. DOI:10.1080/02678292.2018.1429026.
  • Chu F, Dou H, Song YL, et al. A transflective blue-phase liquid crystal display with alternate electrodes. Liq Cryst. 2017;44:1316–1320.
  • Ge Z, Jiao M, Wu ST, et al. Wide-view and broadband circular polarizers for transflective liquid crystal displays. J Disp Technol. 2008;4:129–138.
  • Kemiklioglu E, Chien LC. Electro-optical properties of carbon nanotube-doped polymer-stabilised blue phase liquid crystal IPS cell. Liq Cryst. 2016;43:1067–1074.
  • Chen HY, Lu SF, Wu PH, et al. Transflective BPIII mode with no internal reflector. Liq Cryst. 2017;44:473–478.
  • Li Y, Jiao M, Wu ST. Transflective display using a polymer-stabilized blue phase liquid crystal. Opt Express. 2010;18:16486–16491.
  • Zhu XY, Ge ZB, Wu ST. Analytical solutions for uniaxial film-compensated wide-view liquid crystal displays. J Disp Technol. 2006;2:2–20.
  • Oh SW, Kim AK, Park BW, et al. Optical compensation methods for the elimination of off-axis light leakage in an in-plane-switching liquid crystal display. J Inf Disp. 2015;16:1–10.
  • Kikuchi H, Haseba Y, Yamamoto SI, et al. Optically isotropic nano-structured liquid crystal composites for display applications. SID Int Symp Digest Tech Papers. 2012;40:578–581.
  • Fan HX, Cui JP, Wang QH, et al. Low voltage blue-phase liquid crystal display with triple-penetrating fringe fields. Liq Cryst. 2015;42:41–45.

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