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Article

Preparation of polymer-dispersed liquid crystal doped with indium tin oxide nanoparticles

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Pages 1068-1077 | Received 17 Sep 2017, Accepted 20 Nov 2017, Published online: 01 Dec 2017

References

  • Yan W, Xiao H, Jiang T, et al. Fabrication and thermal insulating properties of ITO/PVB nanocomposites for energy saving glass. J Wuhan Univ Technol-Mat Sci Edit. 2017;32:63–66.
  • Lewis BG, Paine DC. Applications and processing of transparent conducting oxides. MRS Bull. 2000;25:22–27.
  • Wang R, Djurisic A, Beling CD, et al. Indium tin oxide (ITO) thin films: fabrication, properties, post-deposition treatments and applications. Nova Sci Publ. 2005;6:137–174.
  • Biswas PK, De A, Pramanik NC, et al. Effects of tin on IR reflectivity, thermal emissivity, Hall mobility and plasma wavelength of sol–gel indium tin oxide films on glass. Mater Lett. 2003;57:2326–2332.
  • Zhang Y, Zhou L, Yang J, et al. Effects of crosslinking agent/diluents/thiol on morphology of the polymer matrix and electro-optical properties of polymer dispersed liquid crystal. Liq Cryst. 2017. DOI:10.1080/02678292.2017.1376716
  • Kashima M, Cao H, Liu H, et al. Effects of the chain length of crosslinking agents on the electro-optical properties of polymer-dispersed liquid crystal films. Liq Cryst. 2010;37:339–343.
  • Sun Y, Zhang C, Cao H, et al. Effects of functionality of thiol monomer on electro-optical properties of polymer-dispersed liquid crystal films. Liq Cryst. 2017;44:1086–1092.
  • Higgins DA. Probing the mesoscopic chemical and physical properties of polymer-dispersed liquid crystals. Adv Mater. 2000;12:251–264.
  • Higgins DA, Hall JE, Xie A. Optical microscopy studiesof dynamics within individual polymer-dispersed liquid crystal droplets. Acc Chem Res. 2005;38:137–145.
  • Song P, Gao Y, Wang F, et al. Studies on the electro-optical and the light-scattering properties of PDLC films with the size gradient of the LC droplets. Liq Cryst. 2015;42:390–396.
  • Doane JW, Golemme A, West JL, et al. Polymer dispersed liquid crystals for display application. Mol Cryst Liq Cryst. 1988;165:511–532.
  • Ailincai D, Farcau C, Paslaru E, et al. PDLC composites based on polyvinyl boric acid matrix - a promising pathway towards biomedical engineering. Liq Cryst. 2016;43:1973–1985.
  • Shim H, Lyu H-K, Allabergenov B, et al. Enhancement of frequency modulation response time for polymer-dispersed liquid crystal. Liq Cryst. 2016;43:1390–1396.
  • Boots JG, Touwslager HM, Serbutoviez FJ, et al. Polymerization-induced phase separation.1. conversion—phase diagrams. Macromolecules. 1996;29(24):7683–7689.
  • He J, Yan B, Yu B, et al. The effect of molecular weight of polymer matrix on properties of polymer-dispersed liquid crystals. Eur Polymer J. 2007;43(6):2745–2749.
  • Liu J-H, Liu H-T, Tsai F-R. Preparation and characterization of polymer-dispersed liquid crystal films using poly (bornyl methacrylate). Polym Int. 1997;42(4):385–392.
  • Abdoune FZ, Benkhaled L, Coqueret X, et al. Effects of ultraviolet-curing conditions on the electro-optical behavior of polymer dispersed liquid crystal films. Mol Cryst Liq Cryst. 2004;422(1):163–172.
  • LeGrange JD, Carter SA, Fuentes M, et al. Dependence of the morphology of polymer dispersed liquid crystals on the UV polymerization process. J Appl Phys. 1997;81:5992–5999.
  • Li W, Cao Y, Cao H, et al. Effect of the structure of polymerizable monomers on the electro-optical properties of UV cured polymer dispersed liquid crystal films. J Polym Sci Part B Polym Phys. 2008;46:1369–1375.
  • Wu BG, Erdmann JH, Doane JW. Response times and voltages for PDLC light shutters. Liq Cryst. 1989;5:1453–1465.
  • Song P, Cao H, Wang F, et al. Study of polymer-dispersed liquid crystal systems using epoxies /acrylates as hybrid polymer matrix components. Liq Cryst. 2012;39:903–909.
  • Jain SC, Rout DK. Electro-optic response of polymer dispersed liquid-crystal films. J Appl Phys. 1991;70:6988–6992.
  • Amundson K, Blaaderen A, Wiltzius P. Morphology and electro-optic properties of polymer-dispersed liquid-crystal films. Phys Rev. 1997;55:1646–1654.
  • Drzaic PS. Reorientation dynamics of polymer dispersed nematic liquid crystal films. Liq Cryst. 1988;3:1543–1558.
  • Maschke U, Coquerent X, Benmouna M. Electro-optical properties of polymer-dispersed liquid crystals. M Macromol Rapid Commun. 2002;23:159–170.
  • Mucha M. Polymer as an important component of blends and composites with liquid crystals. Prog Polym Sci. 2003;28:837–873.
  • Cox SJ, Reshetnyak VY, Sluckin TJ. Effective medium theory of light scattering in polymer dispersed liquid crystal films. J Phys D Appl Phys. 1998;31:1611–1625.
  • Whitehead JB, Zumer S, Doane JW. Light scattering from a dispersion of aligned nematic droplets. J Appl Phys. 1993;73:1057–1065.
  • Li WB, Cao H, Kashima MK, et al. Control of the microstructure of polymer network and effects of the microstructures on light scattering properties of UV-cured polymer-dispersed liquid crystal films. J Polym Sci Part B Polym Phys. 2008;46:2090–2099.
  • Li WB, Cheng ZH, Pan GH, et al. Effects of the mixture composition on the microstructure of polymer matrix and light scattering properties of liquid crystal/photo-polymerizable monomers composites. Opt Mater. 2008;31:434–439.
  • Chen J-W, Wang C-R, Chou T-R, et al. The n-alcohols liquid doping effect on the twisted nematic liquid crystals. Displays. 2015;45:39–43.
  • Hsu -C-C, Chen Y-X, Li H-W, et al. Low switching voltage ZnO quantum dots doped polymer-dispersed liquid crystal film. Opt Express. 2016;24:7063–7068.

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