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Article

Polarised UV-induced homogeneous alignment for fringe-field switching liquid crystal display with a new azobenzene monomer

Pages 640-648 | Received 16 Jul 2018, Accepted 21 Aug 2018, Published online: 06 Sep 2018

References

  • Schadt M. Nematic liquid crystals and twisted-nematic LCDs. Liq Cryst. 2015;42:646–652.
  • Oh-E M, Kondo K. Quantitative analysis of cell gap margin for uniform optical properties using in-plane switching of liquid crystals. Jpn J Appl Phys. 1997;36:6798–6803.
  • Satake T, Nishioka T, Saito T, et al. Electrooptical study of an in-plane switching mode using a uniaxial medium model. Jpn J Appl Phys. 2001;40:195–199.
  • Hong H-K, Seo C-R. Dependency of liquid crystal of in-plane switching mode on rubbing angle. Jpn J Appl Phys. 2004;43:7639–7642.
  • Lee SH, Lee SL, Kim HY. Electro-optic characteristics and switching principle of a nematic liquid crystal cell controlled by fringe-field switching. Appl Phys Lett. 1998;73:2881‐2883.
  • Hong SH, Park IC, Kim HY, et al. Electro-optic characteristics of fringe-field switching mode depending on rubbing direction. Jpn J Appl Phys. 2000;39:L527–L530.
  • Lim YJ, Shin SJ, Cho NH, et al. High performance transflective liquid crystal display associated with fringe-field switching device. Opt Express. 2011;19:8085–8091.
  • Takeda A, Kataoka S, Sasaki T, et al. A super-high-image-quality multi-domain vertical alignment LCD by new rubbing-less technology. SID Int Symp Dig Tech Papers. 1998;29:1077–1079.
  • Nakanishi Y, Hanaoka K, Shibasaki M, et al. Relation between monomer structure and image sticking phenomenon of polymer-sustained-alignment liquid crystal displays. Jpn J Appl Phys. 2011;50:051702-1–051702-5.
  • Seo J-H, Lee S-P, Yoon T-H, et al. Basic properties of cell fabricated by ion-beam treatment for in-plane switching LCD. J Info Disp. 2007;6:12–18.
  • Tie W, Jeong IH, Jang IW, et al. Reducing driving voltage and securing electro-optic reliability of in-plane switching liquid crystal display by applying polysulfone photoalignment layer with photo-reactive mesogen. Liq Cryst. 2014;41:1057–1064.
  • Jeng S-C, Kuo C-W, Wang H-L, et al. Nanoparticles-induced vertical alignment in liquid crystal cell. Appl Phys Lett. 2007;91:061112-1-3.
  • Ho C-Y, Lee J-Y. Fabrication of pseudo-pi vertical alignment mode liquid crystal devices with ultra-violet polymerization and investigations of their electro-optical characteristics. Liq Cryst. 2010;37:997–1012.
  • Momoi Y, Kwak M, Choi D, et al. Polyimide-free LCD by dissolving dendrimers. J Soc Info Disp. 2012;20:486–492.
  • Ohtsuka K, Nagataki Y, Goda K, et al. Study of liquid crystal display fabricated using slit coater under two ultraviolet irradiation conditions. Jpn J Appl Phys. 2013;52:05DB04-1–4.
  • Jeong IH, Yu JH, Jin H-S, et al. Novel approach to achieve conventional polyimide-less IPS/FFS LCDs. SID Int Symp Dig Tech Papers. 2014;45:1418–1420.
  • Mizusaki M, Tsuchiya H, Minoura K. Fabrication of homogeneously self-alignment fringe-field switching mode liquid crystal cell without using a conventional alignment layer. Liq Cryst. 2017;44:1394–1401.
  • O’Neill M, Kelly SM. Photoinduced surface alignment for liquid crystal displays. J Phys D Appl Phys. 2000;33:R67–R84.
  • Ge Z, Zhu X, Wu TX, et al. High transmittance in-plane switching liquid crystal displays. J Disp Tech. 2006;2:114–119.
  • Chen Y, Peng F, Yamaguchi T, et al. High performance negative dielectric anisotropy liquid crystals for display applications. Crystals. 2013;3:483–503.
  • Nakagaki R, Hiramatsu M, Watanabe T, et al. Magnetic isotope and external magnetic field effects upon the photo-Fries rearrangement of 1-naphthyl acetate. J Phys Chem. 1985;89:3222–3226.
  • Nakanishi Y, Okamoto K. Relationship between concentration of initiator and image-sticking phenomenon of polymer-sustained-alignment liquid crystal displays. Jpn J Appl Phys. 2012;51:041701-1–5.
  • Mizusaki M, Enomoto S, Hara Y, et al. Analysis of polymerization with photo-Fries rearrangement in liquid crystal displays. J Appl Phys. 2013;113:174502-1–174502-6.
  • Tan G, Huang Y, Li M-C, et al. High dynamic range liquid crystal displays with a mini-LED backlight. Opt Express. 2018;26:16572–16584.

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