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Electro-optical properties cholesteric liquid of polymer stabilized crystal film* 被引量:1

Electro-optical properties cholesteric liquid of polymer stabilized crystal film*
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摘要 Liquid crystals (LCs) and polymers are extensively used in various electro-optical applications. In this paper, normal mode polymer stabilized cholesteric LC film is prepared and studied. The effects of chiral dopant and monomer concentrations on the electro-optical properties, such as contrast ratio, driving voltage, hysteresis width and response time, are investigated. The reasons of electro-optical properties influenced by the concentrations of the materials are discussed. Through the proper material recipe, the electro-optical properties of polymer stabilized cholesteric LC film can be optimized. Liquid crystals (LCs) and polymers are extensively used in various electro-optical applications. In this paper, normal mode polymer stabilized cholesteric LC film is prepared and studied. The effects of chiral dopant and monomer concentrations on the electro-optical properties, such as contrast ratio, driving voltage, hysteresis width and response time, are investigated. The reasons of electro-optical properties influenced by the concentrations of the materials are discussed. Through the proper material recipe, the electro-optical properties of polymer stabilized cholesteric LC film can be optimized.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第2期295-301,共7页 中国物理B(英文版)
基金 Project partially supported by the National Natural Science Foundation of China (Grant Nos. 60736042, 60578035 and 50703039) and the Science Foundation of Jilin Province of China (Grant Nos. 20050520 and 20050321-2).
关键词 liquid crystal POLYMER electro-optical property cholesteric liquid crystal liquid crystal, polymer, electro-optical property, cholesteric liquid crystal
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  • 1Yang D K, Doane J W, Yaniv Z and Glasser J 1994 Appl Phys. Lett. 64 1905.
  • 2Yang D K, Huang X Y and Zhu Y M 1997 Ann. Rev Mater. Sci. 27 117.
  • 3Huang Z 2010 Key Eng. Mater. 428-429 206.
  • 4Wang S, He J, Zeng Y, Yan B and Wang Y 2008 Front. Chem. Eng. China 2 265.
  • 5He J, Yan B, Yu B, Wang S, Wang X, Wang J, Zeng Y, Ran R and Wang Y 2008 J. Polym. Sci. Pol. Chem. 46 3140.
  • 6Ma J, Shi L and Yang D K 2010 Appl. Phys. Express 3 021702.
  • 7Kikuchi H, Yokota M, Hisakado Y, Yang H and Kajiyama T 2002 Nature Mater. 1 64.
  • 8Choi S W, Yamamoto S I, Iwata T and Kikuchi H 2009 J. Phys. D: Appl. Phys. 42 112002.
  • 9Guo J, Sun J, Zhang L, Li K, Cao H, Yang H and Zhu S 2008 Polym. Adv. Technol. 19 1504.
  • 10Huang Z, Yang W and Wang J 2008 Front. Optoelectron. China 1 188.

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