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Phase Transitions
A Multinational Journal
Volume 88, 2015 - Issue 5
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Original Articles

Electro-optical properties of nanodispersions based on ferroelectric thiobenzoates

Pages 513-520 | Received 16 Apr 2014, Accepted 16 Nov 2014, Published online: 15 Jan 2015

References

  • Kaur S, Singh SP, Biradar AN, Choudhary A, Sreenivas K. Enhanced electro-optical properties in gold nanoparticles doped ferroelectric liquid crystals. Appl Phys Lett. 2007;91:023120.
  • Kumar A, Prakash J, Mehta DS, Biradar AM, Haase W. Enhanced photoluminescence in gold nanoparticles doped ferroelectric liquid crystals. Appl Phys Lett. 2009;95:023117.
  • Podgornov FV, Ryzhkova A, Haase W. Influence of gold nanorods size on electro-optical and dielectric properties of ferroelectric liquid crystals. Appl Phys Lett. 2010;97:212903.
  • Prakash J, Choudhary A, Kumar A, Mehta DS, Biradar AM. Nonvolatile memory effect based on gold nanoparticles doped ferroelectric liquid crystal. Appl Phys Lett. 2008;93:112904.
  • Joshi T, Kumar A, Prakash J, Biradar AM. Low frequency dielectric relaxations of gold nanoparticles/ferroelectric liquid crystal composites. Liq Cryst. 2010;37:1433–1438.
  • Lapanik A, Rudzki A, Kinkead B, Qi H, Hegmann T, Haase W. Electrooptical and dielectric properties of alkylthiolcapped gold nanoparticle-ferroelectric liquid crystal nanocomposites: influence of chain length and tethered liquid crystal functional groups. Soft Matter. 2012;8:8722–8728.
  • Mandal PK, Lapanik A, Wipf R, Stuehn B, Haase W. Sub-hertz relaxation process in chiral smectic mixtures doped with silver nanoparticles. Appl Phys Lett. 2012;100:073112.
  • Haase W, Lapanik A, Ottinger M. Nanomaterials dispersed in ferroelectric liquid crystals. Proc SPIE 8114. 2011;81140H:1–10.
  • Prakash J, Kumar A, Joshi T, Mehta DS, Biradar AM, Haase W. Spontaneous polarization in smectic A phase of carbon nanotubes doped deformed helix ferroelectric liquid crystal. Mol Cryst Liq Cryst. 2011;541:404–414.
  • Podgornov FV, Suvorova A, Lapanik A, Haase W. Electrooptic and dielectric properties of ferroelectric liquid crystal/single walled carbon nanotubes dispersions confined in thin cells. Chem Phys Lett. 2009;479:206–210.
  • Arora P, Mikulko A, Podgornov F, Haase W. Dielectric and electro-optic properties of new ferroelectric liquid crystalline mixture doped with carbon anotubes. Mol Cryst Liq Cryst. 2009;502:1–8.
  • Gupta S, Kumar A, Srivastava A, Manohar R. Modification in dielectric properties of SWCNT doped ferroelectric liquid crystals. J Non-Cryst Solids 2011;357:1822–1826.
  • Shukla RK, Raina KK, Hamplová V, Kašpar M, Bubnov A. Dielectric behaviour of the composite system: multiwall carbon nanotubes dispersed in ferroelectric liquid crystal. Phase Trans. 2011;84:850–857.
  • Joshi T, Kumar A, Prakash J, Biradar AM. Low power operation of ferroelectric liquid crystal system dispersed with zinc oxide nanoparticles. Appl Phys Lett. 2010;96:253109.
  • Li LS, Huang JY. Tailoring switching properties of dipolar species in ferroelectric liquid crystal with ZnO nanoparticles. J Phys D. 2009;42:125413.
  • Huang JY, Li LS, Chen MC. Probing molecular binding effect from zinc oxide nanocrystal doping in surface stabilized ferroelectric liquid crystal with two-dimensional infrared correlation technique. J Phys Chem C. 2008;112:5410–5415.
  • Manohar R, Srivastava A, Tripathi P, Singh D. Dielectric and electro-optical study of ZnO nano rods doped ferroelectric liquid crystals. J Mater Sci. 2011;46:5969–5976.
  • Topnania N, Hamplová V, Kašpar M, Novotná V, Gorecka E. Synthesis, characterisation and functionalisation of ZnO and TiO2 nanostructures: used as dopants in liquid crystal polymers. Liq Cryst. 2014;41:91–100.
  • Kumar A, Prakash J, Goel P, Khan T, Dhawan SK, Silotia P, Biradar AM. Polymeric-nanoparticles-induced vertical alignment in ferroelectric liquid crystals. Europhys Lett. 2009;88:26003.
  • Kumar A, Silotia P, Biradar AM. Effect of polymeric nanoparticles on dielectric and electro-optical properties of ferroelectric liquid crystals. J Appl Phys. 2010;108:024107.
  • Ghosh S, Nayek P, Roy SK, Gangopadhyay R, Rahaman Molla M, Majumder TP. Effect of conducting polymer poly (3,4-ethylenedioxythiophene) (PEDOT) nanotubes on electrooptical and dielectric properties of a ferroelectric liquid crystal. Eur Phys J E. 2011;34:1–6.
  • Mikulko A, Arora P, Glushchenko A, Lapanik A, Haase W. Complementary studies of BaTiO3 nanoparticles suspended in a ferroelectric liquid-crystalline mixture. Europhys Lett. 2009;87:27009.
  • Coondoo I, Goel P, Malik A, Biradar AM. Dielectric and polarization properties of BaTiO3 nanoparticle/ferroelectric liquid crystal colloidal suspension. Integr Ferroelectr. 2011;125:81–88.
  • Liang HH, Xiao YZ, Hsh FJ, Wu CC, Lee JY. Enhancing the electro-optical properties of ferroelectric liquid crystals by doping ferroelectric nanoparticles. Liq Cryst. 2010;37:255–261.
  • Rudzki A, Evans DR, Cook G, Haase W. Size dependence of harvested BaTiO3 nanoparticles on the electro-optic and dielectric properties of ferroelectric liquid crystal nanocolloids. Appl Optics. 2013;52:E6–E14.
  • Ossowska-Chruściel MD. A convenient synthesis and the mesomorphic properties of new chiral ferroelectric thiobenzoates. Liquid Crystals. 2004;31:1159–1165.
  • Zalewski S, Ossowska-Chruściel MD, Chruściel J. Neutron scattering and complementary methods in investigations of condensed phase: mesomorphic properties of condensed phases in MHOBSn. Siedlce: University of Podlasie Publishing House; 2005.
  • Ossowska-Chruściel MD, Zalewski S, Rudzki A, Filiks A, Chruściel J. The phase behaviour of 4-n-pentylphenyl-4′-n-heptyloxythiobenzoate. Phase Trans. 2006;79:679–690.

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