236
Views
13
CrossRef citations to date
0
Altmetric
Articles

Low voltage and high transmittance transflective blue-phase liquid crystal display with opposite polar electrodes

, , , &
Pages 410-414 | Received 28 Feb 2017, Accepted 31 May 2017, Published online: 25 Jun 2017

References

  • Chen KM, Gauza S, Xianyu H, et al. Submillisecond gray-level response time of a polymer-stabilized blue-phase liquid crystal. J Display Technol. 2010;6:49–51.
  • Chen Y, Yan J, Sun J, et al. A microsecond-response polymer-stabilized blue phase liquid crystal. Appl Phys Lett. 2011;99:201105.
  • Kikuchi H, Yokota M, Hisakado Y, et al. Polymer-stabilized liquid crystal blue phases. Nat Mater. 2002;1:64–68.
  • Rao L, Yan J, Wu ST, et al. A large Kerr constant polymer-stabilized blue phase liquid crystal. Appl Phys Lett. 2011;98:081109.
  • Yan J, Cheng HC, Gauza S, et al. Extended Kerr effect of polymer-stabilized blue phase liquid crystals. Appl Phys Lett. 2010;96:071105.
  • Gauza S, Zhu X, Piecek W, et al. Fast switching liquid crystals for color-sequential LCDs. J Disp Technol. 2007;3:250–252.
  • Algorri JF, Urruchi V, Sanchez-Pena JM. Reflective sidewall electrodes for low voltage and high transmittance blue-phase liquid crystal displays. Liq Cryst. 2015;42:941–946.
  • Liu JL, Ma HM, Sun YB. Blue-phase liquid crystal display with high dielectric material. Liq Cryst. 2016;43:1748–1752.
  • Endo N, Matsumoto T, Kikuchi H, et al. Study of polymer-stabilised blue phase liquid crystal on a single substrate. Liq Cryst. 2016;43:66–76.
  • Zhu X, Ge Z, Wu ST. Analytical solutions for uniaxial-film-compensated wide-view liquid crystal displays. J Disp Technol. 2006;2:2–20.
  • Li P, Sun YB, Zhao YL, et al. High transmittance blue-phase liquid crystal displays with slit-shaped electrode. Liq Cryst. 2013;40:1417–1421.
  • Jiao M, Li Y, Wu ST. Low voltage and high transmittance blue-phase liquid crystal displays with corrugated electrodes. Appl Phys Lett. 2010;96:011102.
  • Kim SJ, Kim HY, Lee SH, et al. Cell gap-dependent transmittance characteristic in a fringe field-driven homogeneously aligned liquid crystal cell with positive dielectric anisotropy. Jpn J Appl Phys. 2005;44:6581–6586.
  • Ge Z, Gauza S, Jiao M, et al. Electro-optics of polymer-stabilized blue phase liquid crystal displays. Appl Phys Lett. 2009;94:101104.
  • Sun YB, Zhao YL, Li YF, et al. A low operating electric field blue-phase liquid crystal display with wedge protrusion. J Disp Technol. 2014;10:797–801.
  • Yan J, Wu ST. Effect of polymer concentration and composition on blue phase liquid crystals. J Disp Technol. 2011;7:490–493.
  • Zhou F, Wang QH, Wu D, et al. Polymer-stabilized blue phase liquid crystal display with slanted wall-shaped electrodes. Chin Opt Lett. 2012;10:022301.
  • Lee JH, Zhu X, Wu ST. Novel color-sequential transflective liquid crystal displays. J Disp Technol. 2007;3:2–8.
  • Lee SH, Do HW, Lee GD, et al. A novel transflective liquid crystal display with a periodically patterned electrode. Jpn J Appl Phys. 2003;42:L1455–L1458.
  • Park JW, Ahn YJ, Jung JH, et al. Liquid crystal display using combined fringe and in-plane electric fields. Appl Phys Lett. 2008;93:081103.
  • Li Y, Jiao M, Wu ST. Transflective display using a polymer-stabilized blue-phase liquid crystal. Opt Express. 2010;18:16486–16491.
  • Li Y, Wu ST. Transmissive and transflective blue-phase LCDs with enhanced protrusion electrodes. J Disp Technol. 2011;7:359–361.
  • Cui JP, Zhou F, Wang QH, et al. Transflective blue-phase liquid crystal display using an etched in-plane switching structure. J Disp Technol. 2011;7:398–401.
  • Fan HX, Cui JP, Wang QH. High transmittance blue-phase liquid crystal display with improved protrusion electrodes. Liq Cryst. 2015;42:481–485.
  • Chen Y, Luo Z, Peng F, et al. Fringe-field switching with a negative dielectric anisotropy liquid crystal. J Disp Technol. 2013;9:74–77.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.