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Polymer network-ferroelectric liquid

Photopolymerization and Electrooptic Properties of Polymer Network/Ferroelectric Liquid-Crystal... [Pg.16]

Effect of Polymer Network in Polymer Dispersed Ferroelectric Liquid Crystals (PSFLC)... [Pg.133]

Lahiri T, Pal Majumder T (2012) The effect of cross-linked chains of polymer network on the memory states of polymer stabilized ferroelectric molecules. Polymer 53 2121-2127 Lee K, Suh SW, Lee SD (1994a) Fast linear electro-optical switching properties of polymer-dispersed ferroelectric liquid crystals. Appl Phys Lett 64 718 Lee K, Suh SW, Lee SD, Kim CY (1994b) Ferroelectric response of polymer-dispersed chiral smectic C liquid crystal composites. J Korean Phys Soc 27(1) 86... [Pg.165]

Sato H, Fujikake H, Lino Y, Kawakita M, Kikuchi H (2002) Flexible grayscale ferroelectric liquid crystal device containing polymer walls and networks. Jpn J Appl Phys 41 5302-5306 Sato H, Fujikake H, Kikuchi H, Kurita T (2003) Rollable polymer stabilized ferroelectric liquid crystal device using thin plastic substrates. Opt Rev 10(5) 352-356 Schrader DM, Jean YC (1988) Positron and positronium chemistry. Elsevier, Amsterdam Shinkawa K, Takahashi H, Fume H (2008) Ferroelectric liquid crystal cell with phase separated composite organic film. Ferroelectrics 364 107-112 Simha R, Somcynsky T (1969) On the statistical thermodynamics of spherical and chain molecule fluids. Macromolecules 2 342-350... [Pg.166]

Polymerization of reactive monomeric liquid crystals is one method for stabilizing the liquid-crystalline thin films. Another approach is to form chemical gels of liquid crystal molecules with low molecular weight by construction of a polymer network. This method has been investigated for the stabilization of ferroelectric liquid crystal displays. Guymon et al. reported that a polymer network produced by photochemical cross-linking accumu-... [Pg.173]

Zhao and coworkers [234, 235] reported that an azobenzene polymer network can also optically align ferroelectric liquid crystals. This was done by dissolving two chiral dimethacrylate and one chiral diacrylate monomers containing azobenzene groups in a commercial ferroelectric liquid crystal host. The monomers were illustrated as follows ... [Pg.764]

The chirality in liquid crystal elastomers can be at the origin of additional physical properties such as ferroelectricity, pyroelectricity, circular dichro-ism, and nonlinear optics coupled to the polymer network. Applying external mechanical fields to the elastomers consequently causes electro-... [Pg.433]

In general, research on classes of materials is connected with that on materials with specific properties but includes somewhat more general research on composites, polyurethanes, epoxies, fluoropolymers, ferroelectric liquid crystals (especially those with fast switching times), polymer-polymer miscibility, double network elastomers, crystallization in polymers, polymeric Langmuir-Blodgett and other multilayer films, and polymer-stabilized synthetic membranes. [Pg.30]

H. Fujikake, T. Murashige, J. Yonai, H. Sato, Y. Tsuchiya, H. Kikuchi, Y. lino, M. Kawakita, K. Taklzawa, Flexible ferroelectric liquid crystal devices with polymer fiber network supporting plastic substrates. Proc. Int. Display Res. Conf. 3.3, 68-71 (2000)... [Pg.238]

Dierking I, Osipov MA, Lagerwall ST (2000) The effect of a polymer network on smectic phase structure as probed by polarization measurements on a ferroelectric liquid crystal. Fur Phys J E... [Pg.164]

Hikmet RAM, Boots HMJ, Michielsen M (1995) Ferroelectric liquid crystal gels—network stabilized ferroelectric display. Liq Cryst 19 65-74 Inoue T, Higuchi N, Fume H (2008) The effect of pol5mer doping on the formation of helical stmcture in ferroelectric liquid crystals. Ferroelectrics 364 113-120 Jean YC (1990) Positron annihilation spectroscopy for chemical analysis a novel probe for microstmctural analysis of polymers. Microchem J 42 72-102 Jean YC, Nakanishi H, Hao LY, Sandreczki TC (1990) Anisotropy of free-volume hole dimensions in polymers probed by positron annihilation spectroscopy. Phys Rev B 42 9705-9708 Jean YC, Mallon PE, Schrader DM (2003) Principles and application of positron and positronium chemistry. World Scientific, Singapore... [Pg.165]

Pal Majumder T, Mitra M, Roy SK (1994) Dielectric relaxation and rotational viscosity of a ferroelectric liquid crystal mixture. Phys Rev E 50(6) 4976-4800 Petit M, Daoudi A, Ismaili M, Buisine JM (2006) Electroclinic effect in a chiral smectic-A liquid crystal stabilized by an anisotropic polymer network. Phys Rev E 74 061707 Petit M, Hemine J, Daoudi A, Ismaili M, Buisine JM, Da Costa A (2009) Effect of the network density on dynamics of the soft mode and the Goldstone modes in short-pitch ferroelectric liquid crystals stabihzed by an anisotropic polymer network. Phys Rev E 79 031705 Pirs J, Blinc R, Marin B, Pirs S, Doane JW (1995) Polymer network volume stabilized ferroelectric liquid crystal displays. Mol Cryst Liq Cryst 264 155-163 Polyanin AD, Zaitsev VF (2003) Handbook of exact solutions for ordinary differential equations, 2nd edn. Chapman Hall, Boca Raton... [Pg.166]


See other pages where Polymer network-ferroelectric liquid is mentioned: [Pg.16]    [Pg.133]    [Pg.165]    [Pg.668]    [Pg.668]    [Pg.344]    [Pg.513]    [Pg.91]    [Pg.419]    [Pg.676]    [Pg.3099]    [Pg.52]    [Pg.231]    [Pg.232]    [Pg.145]    [Pg.162]   


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