• Title/Summary/Keyword: poly (vinyl cinnamate)

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Effect of Plasticization of Poly(Vinyl Cinnamate) on Liquid Crystal Orientation Stability

  • Hah, Hyun-Dae;Sung, Shi-Joon;Cho, Ki-Yun;Kim, Won-Sun;Jeong, Yong-Cheol;Park, Jung-Ki
    • 한국정보디스플레이학회:학술대회논문집
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    • 2005.07b
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    • pp.1518-1522
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    • 2005
  • A cinnamate group is a well-known compound group used in the dimerization reaction by ultraviolet irradiation, and cinnamate polymers are studied as photoalignment materials. In this study, the radical reaction of cinnamate side groups attached to a flexible polymer backbone is considered feasible using thermal energy. To induce the thermal reaction of cinnamate side groups, we modified the flexibility of poly(vinyl cinnamate) by introducing a plasticizer into the polymers and investigated the thermal reaction behavior of cinnamate side groups. The plasticization of poly(vinyl cinnamate) makes the induction of the thermal reaction of cinnamate side groups easier than that of unmodified poly(vinyl cinnamate). The thermal reaction of cinnamate side groups is closely related to the enhancement of the thermal stability of the liquid crystal orientation of polymer films with polarized UV irradiation.

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Investigation of Electro-optical Characteristics in a-TN-LCD on Poly(vinyl)cinnamate Surfaces (Poly(vinyl)cinnamate막을 이용한 a-TN-LCD의 시야각특성에 관한 연구)

  • Seo, Dae-Shik;Park, Ji-Ho;Lee, Chang-Hun;Lee, Bo-Ho
    • Proceedings of the KIEE Conference
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    • 1997.07d
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    • pp.1588-1590
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    • 1997
  • The viewing angle characteristics of amorphous(a)-twisted nematic(TN)-liquid crystal display (LCD) on poly(vinyl)cinnamate (PVC) surfaces with photo polymerrization were investigated. It was found that the threshold voltage increases with increasing the polymerization of PVC surfaces. That the domain size of a-TN-LCD is affected by the surface crystallization with increasing the photo polymerization of the photo-alignment film. We observed that the viewing angle of a-TN-LCD increased with increasing the photo polymerization on PVC surfaces. Finally, we consider that the viewing angle of a-TN-LCD on PVC surfaces is large compared to a-TN-LCD on polyimide(PI) surface.

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Investigation of Electro-optical Characteristics in A-TN-LCD on Poly(vinyl)cinnamate Surfaces (Poly(vinyl)cinnamate막을 이용한 A-TN-LCD의 전기광학 특성)

  • 서대식;박지호;이보호
    • Electrical & Electronic Materials
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    • v.10 no.6
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    • pp.576-580
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    • 1997
  • In this paper, the viewing angle characteristics of amorphous (a) - twisted nematic (TN)-liquid crystal display (LCD) on poly(vinyl)cinnamate (PVC) surface with UV (ultraviolet) light irradiation were investigated. It was found that the threshold voltage increases with increasing the polymerization of PVC surfaces. We observed that the domain size of a-TN-LCD decreases with increasing the photo polymerization by increasing UV light irradiation time on PVC films. Also, we observed that the viewing angle of a-TN-LCD increased with increasing the photo polymerization on PVC surfaces. Finally, we consider that the viewing angle of a-TN-LCD on PVC surfaces is large compared to a-TN-LCD on polyimide (PI) surface.

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Phase Diagrams of Binary Mixtures Comprising Main-Chain Dimer Liquid Crystals and Molecular Ordering (주쇄형이량체액정의 상도와 분자형태)

  • 남수용
    • Journal of the Korean Graphic Arts Communication Society
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    • v.16 no.2
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    • pp.61-74
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    • 1998
  • Some photopolymer, poly(vinyl cinnamoyl acetate)(PVCiA) was synthesized by esterification of polymer(vinyl alcohol)(PVA) with monochloroacetic acid, followed by reaction poly(vinyl monochloroacetate)(PVAhA) and potassium cinnamate. When esterification of PVA with monochloroacetic acid was reacted in the dimethyl sulfoxide(DMSO), in the synthesis of PVChA, it is very good yield and the successive cinnamoyl acetoxyl esterification of PVCiA can be successfully synthesized. But PVCiA is low photosensitive polymer if net added photosensitizing dyes. Here, we synthesized photosensitizing dyes.

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Photosensitive Effect of Poly(vinyl cinnamoyl acetate) by New Squarylium Dyes(I) (신규 Squarylium Dyes 증감제에 의한 Poly(vinyl cinnamoyl acetate)의 고감도화(I))

  • 손세모;박진화
    • Journal of the Korean Graphic Arts Communication Society
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    • v.16 no.3
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    • pp.1-13
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    • 1998
  • Some photopolymer, poly(vinyl cinnamoyl acetate)(PVCiA) was synthesized by esterification of polymer(vinyl alcohol(PVA) with monochloroacetic acid, followed by reaction poly(vinyl monochloroacetate)(PVChA) and potassium cinnamate. When esterification of PVA with monochloroacetic acid was reacted in the dimethyl sulfoxide(DMSO), in the synthesis of PVChA, it is very good yield and the successive cinnamoyl acetoxyl esterification of PVCiA can be successfully synthesized. But PVCiA is low photosensitive polymer if not added photosensitizing dyes. Here, we synthesized photosensitizing dyes. trifluoromethylindol squarylium dye derivatives(TFSQ). Indolization of 3-trifluoromethylphenyl-hydrazine formed 4- and 6-substituted indoles, the rate of 4- and 6-substituted indoles is close to unity. Absorption's coefficient of 1,3-bis(4-trifluoromethyl-1,3,3-trimethylindol) squarylium dye(TFSQ) is 7.57$\times$10\ulcorner, PVCiA added with TFSQ(3%) was highly sensitized six times than not added.

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A Study on the Color Prediction of Halftone Multi-Color Image (망점 다색 화상의 색예측에 관한 연구)

  • 안석출
    • Journal of the Korean Graphic Arts Communication Society
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    • v.11 no.1
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    • pp.85-101
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    • 1993
  • Poly(vinyl cinnamate) had excellent resolution and no dark reaction and high etch resistent. But is was developed in polar solvent. A aqueous-photopolymer was synthesised for improvment of developability. Poly(vinyl cinnamoyl acetate)(PVCiA) and aqueous-PVCiA(PVCiA-s) was prepared and was characterized with H-NMR. The characteristic of sensitivity and developablity of coating was investigated by Grayscale method.

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Photoinduced Alignment Based on the Blend of Poly(vinyl cinnamate) and Oligomeric Cinnamate via Linear Polarized UV Irradiation onto Groove Patterned Surface (폴리(비닐 신나메이트)와 을리고머 신나메이트 블렌드를 기반으로 한 그루브 패턴 표면의 광배향막)

  • Sung, Shi-Joon;Kim, Mi-Ri;Ahn, Do-Won;Kim, Dae-Hwan;Kang, Jin-Kyu;Park, Jung-Ki;Cho, Kuk-Young
    • Polymer(Korea)
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    • v.34 no.1
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    • pp.32-37
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    • 2010
  • Photo-alignment property of groove patterned surface prepared from blend of poly (vinyl cinnamate) (PVCi) and oligomeric dicinnamate was investigated for the application for alignment layer of liquid crystal display. The study of the photoreaction kinetics using UV-vis spectrum with the irradiation time showed that the reaction rate of oligomeric cinnamate was enhanced compared to that of PVCi. Blend where PVCi was main component showed a slight improvement on the photoreaction rate. It was unable to obtain groove patterned surface only using oligomeric cinnamate itself owing to the high crystalline character. However, blending of PVCi made it possible to obtain clear surface pattern. Molecular orientation could be confirmed from the polar plot data. It can be suggested that blend of oligomeric cinnamate and polymeric cinnamate is promising material for the photoalignment layer.

Photo-Alignment Mechanism Study of Poly(siloxane cinnamate) (폴리(실록산 신나메이트)의 광배향 메커니즘 연구)

  • Choi Ji-Won;Lim Ji-Chul;Song Ki-Gook
    • Polymer(Korea)
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    • v.30 no.5
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    • pp.417-421
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    • 2006
  • Photo -alignment of poly (siloxane cinnamate) (PSCN) was studied to better understand the alignment mechanism of cynnamoyl groups under various process conditions. DSC and polarized microscope studies showed that the isotropic temperature oi PSCN was about $105^{\circ}C$ and the liquid crystallinity, once formed, did not completely disappear even when the temperature went into the isotropic regions. UV/Vis absorption study suggested that the photo - dimerization was the main photo alignment mechanism and it's efficiency could be enhanced through the self-alignment of PSCN. It was also found that photo-dimerization was in competition with photo-fries reaction and the photo- alignment of PSCN was interfered with the excessive UV because of the strong photo-fries reaction. However, photo - fries reaction could be suppressed by adjusting the UV wavelength.