• 제목/요약/키워드: Rubbed polyimide

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프리틸트각의 발생과 전기광학 특성에 있어서의 배향층의 효과 (Effect of alignment layer on pretilt angle generation and EO performance)

  • 박태규;서대식
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 1999년도 추계학술대회 논문집
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    • pp.537-540
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    • 1999
  • Effect of alignment layers on pretilt angle generation and electrical characteristics in nematic liquid crystal(NLC) by using photo-alignment techniques on polyimide (PI) surface with side chain were studied. The generated pretilt angle of the NLC on rubbed PI surface with 1-layer is almost the same as that of the 2-layers. However, the generated pretilt angle of the NLC on photo-induced PI surface with 2-layers is larger than that of the 1-layer. Therefore, the pretilt angle of the NLC on photo-induced PI surface is attributed to surface roughness due to photo-depolymerization of the polymer with UV light irradiation on PI surface. Next we observed the same characteristics of voltage-transmittance (V-T) and response time for 1- and 2-layers on PI surface. We also observed the same voltage holding ratio (VHR) characteristics for 1- and 2-layers on photo-aligned PI surface. Consequently, we suggest that the VHR of photo-aligned TN-LCD is higher than that of the rubbing-aligned TN-LCD.

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광배향을 이용한 네마틱 액정의 프리틸트 발생과 전기적 특성에 관한 배향층의 효과 (Effects of alignment layer on pretilt generation and electrical characteristics for nematic liquid crystal by using photo-alignment techniques)

  • 서대식;박태규;이승희
    • 한국전기전자재료학회논문지
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    • 제13권2호
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    • pp.151-156
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    • 2000
  • Effects of alignment layers on pretilt nagle generation and electrical characteristics in nematic liquid crystal(NLC) by using photo-alignment techniques on polyimide PI) surface with side chain were studied. The generated pretilt angle of the NLC on rubbed PI surface with 1-layer is almost the same as that with the 2-layers. However, the generated pretilt angle of the NLC on photo-induced PI surface with 2-layers is larger than that with the 1-layer. The different mechanism of pretilt generation in NLC was observed on the rubbing and photo-alignment method. Therefore, the pretilt angle of the NLC on photo-induced PI surface is attributed to surface roughness due to photo-dissociation on the polymer with UV light irradiation on PI surface. We observed the same characteristics of voltage-transmittance (V-T) and response time for 1- and 2-layers on PI surface. Consequently, we sugest that the VHR of photo-aligned TN-LCD is higher than that of the rubbing-aligned TN-LCD.

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Liquid crystal alignment on rubbed self-assembled monolayers with fluorinated alkyl chain

  • Oh, Chan-Woo;Hwang, Seok-Gon;Park, Sang-Geon;Park, Hong-Gyu
    • 한국정보전자통신기술학회논문지
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    • 제11권6호
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    • pp.671-677
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    • 2018
  • In this paper, we investigated the vertical alignment characteristics of liquid crystals (LCs) on fluorinated self-assembled monolayers (FSAMs). For comparison, a commercialized homeotropic polyimide (PI) layer was used as an LC alignment layer. We confirmed the successful deposition of FSAMs and the change of FSAMs before and after rubbing treatment through contact angle measurement and atomic force microscopy. The optical transmittance spectrum of the FSAMs is similar to that of the homeotropic PI layer, which is a superior optical characteristic applicable to LC devices. When FSAMs were applied to the vertically aligned (VA) LC cell, uniform and vertical LC alignments were achieved. In addition, the voltage-transmittance characteristic of VA LC cell with FSAMs was superior to that of VA LC cell with the conventional homeotropic PI layers. These results indicate that the FSAMs are suitable as the homeotropic LC alignment layer for enhanced LC devices.

Vertical Alignment of Liquid Crystal on Film of Plant-based Polysaccharide Derivatives

  • Yeonsu Cho;Jihyeon Moon;DaEun Yang;Hyo Kang
    • Elastomers and Composites
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    • 제58권1호
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    • pp.1-10
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    • 2023
  • In this study, we investigate the liquid crystal (LC) alignment of LC cells created from plant-based polysaccharide derivatives, such as guar gum. Guar gum films exhibit satisfactorily high optical transparency in the visible light region (400-750 nm). For example, the transmittance of polyimide films, which are the most typically used LC alignment layers, is 87%, whereas that of guar gum films deposited onto a glass substrate at a wavelength of 550 nm is approximately 99%. The observed LC alignment depends on the rubbing depth. For example, an LC cell comprising a guar gum film fabricated via rubbing at rubbing depths of 0.1, 0.2, 0.3, and 0.4 mm exhibits a planar LC alignment, whereas it exhibits a vertical LC alignment at a rubbing depth of 0.5 mm. Additionally, the LC alignment is shown to be correlated with the total surface energy of the guar gum films. When the total surface energy of a rubbed guar gum film exceeds 58.10 mJ/m2, an LC cell comprising the guar gum film exhibits a stable and vertical LC alignment. Therefore, guar gum can be used to realize the vertical alignment system of LC via a simple adjustment of the rubbing depth.

액정 디스플레이 배향막을 위한 이온빔 표면조사에 관한 연구 (Ion beam irradiation for surface modification of alignment layers in liquid crystal displays)

  • 오병윤;김병용;이강민;김영환;한정민;이상극;서대식
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2008년도 춘계학술대회 및 기술 세미나 논문집 디스플레이 광소자
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    • pp.41-41
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    • 2008
  • In general, polyimides (PIs) are used in alignment layers in liquid crystal displays (LCDs). The rubbing alignment technique has been widely used to align the LC molecules on the PI layer. Although this method is suitable for mass production of LCDs because of its simple process and high productivity, it has certain limitations. A rubbed PI surface includes debris left by the cloth, and the generation of electrostatic charges during the rubbing induces local defects, streaks, and a grating-like wavy surface due to nonuniform microgrooves that degrade the display resolution of computer displays and digital television. Additional washing and drying to remove the debris, and overwriting for multi-domain formation to improve the electro-optical characteristics such as the wide viewing angle, reduce the cost-effectiveness of the process. Therefore, an alternative to non-rubbing techniques without changing the LC alignment layer (i.e, PI) is proposed. The surface of LC alignment layers as a function of the ion beam (IE) energy was modified. Various pretilt angles were created on the IB-irradiated PI surfaces. After IB irradiation, the Ar ions did not change the morphology of the PI surface, indicating that the pretilt angle was not due to microgrooves. To verify the compositional behavior for the LC alignment, the chemical bonding states of the ill-irradiated PI surfaces were analyzed in detail by XPS. The chemical structure analysis showed that ability of LCs to align was due to the preferential orientation of the carbon network, which was caused by the breaking of C=O double bonds in the imide ring, parallel to the incident 18 direction. The potential of non-rubbing technology for fabricating display devices was further conformed by achieving the superior electro-optical characteristics, compared to rubbed PI.

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Vertical alignment of liquid crystal on $a-SiO_x$film by using $Ar^+$ beam

  • Son, Phil-Kook;Park, Jeung-Hun;Cha, Sung-Su;Kim, Jae-Chang;Yoon, Tae-Hoon
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2006년도 6th International Meeting on Information Display
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    • pp.818-821
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    • 2006
  • We demonstrate the vertical alignment of liquid crystal on $a-SiO_x$ film surface using the ion beam exposure. Liquid crystal can be aligned vertically by the rotational oblique evaporation of $a-SiO_x$ film. However, the electro-optic switching behavior of liquid crystal along random directions results in disclination lines. We found that we can achieve highly uniform alignment of liquid crystal without disclination lines by using the ion beam exposure. We found from XRD and XPS data that the vertical alignment can be achieved when x approaches 1.5 at the $a-SiO_x$ film surface. We have shown that the pretilt angle can be controlled by changing ion beam parameters, such as the ion beam energy, the angle of incidence, and the exposure time. We found that whether liquid crystals can be aligned vertically or homogeneously on $a-SiO_x$ film can be predicted simply by measuring the change in optical transmittance by deposition of $a-SiO_x$ thin film layers. We also have shown that a liquid crystal cell aligned vertically by the ion beam exposure exhibits the voltage-transmittance curve similar to that of a rubbed polyimide cell.

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이온빔 조사된 저온 소성 인듐 아연 산화막을 이용한 액정의 고속 스위칭 특성 연구 (Fast liquid crystal switching performance on indium zinc oxide films with low curing temperature via ion-beam irradiation)

  • 오병윤
    • 전기전자학회논문지
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    • 제23권3호
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    • pp.904-909
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    • 2019
  • $100^{\circ}C$에 소성한 인듐 아연 산화막 (IZO)을 이온빔 처리하여, 균일할 수평 액정 배향을 구현하였다. 유리 기판 위에 코팅된 IZO 박막을 $100^{\circ}C$에 소성하고 액정 배향 기술로 이온빔을 사용하였다. 이것을 이용하여 얻어진 액정 배향의 특성을 분석하기 위해서, 편광 현미경과 결정 회전법을 사용하였다. 또한 이온빔 처리된 IZO 박막을 이용하여 만든 액정 셀이 높은 품질의 액정 소자에 충분한 열적 안정성을 가진다는 것을 확인할 수 있었다. 그리고 전계방출 주사 전자 현미경을 이용하여 이온빔의 IZO 박막의 표면에 미치는 영향을 분석하였다. 이것을 통하여 이온빔이 IZO 박막 표면의 거칠기를 변화시키고, 액정 배향에 영향을 준다는 것을 확인할 수 있었다. 마지막으로 IZO 박막으로 제작한 액정 셀의 전기-광학 특성을 측정하였다. 그리고 이것이 기존에 사용되는 러빙법 처리된 폴리이미드 박막으로 제작한 액정 셀보다 뛰어난 특성을 가진다는 것을 확인하였다. 또한 액정 고정 에너지를 측정하여 이것이 균일한 액정 배향을 구현하기 위한 적합한 특성을 가진다는 것을 확인하였다.

옥타[8-{4-(4'-시아노페닐아조)펜옥시}]옥틸 그리고 옥타[8-{4-(4'-시아노페닐아조) 펜옥시카보닐}]헵타노화 이당류의 열방성 액정과 광화학적 상전이 거동 (Thermotropic Liquid Crystalline and Photochemical Phase Transition Behavior of Octa[8-{4-(4'-cyanophenylazo)phenoxy}]octyl and Octa[8-{4-(4'-cyanophenylazo) phenoxycarbonyl}]heptanoated Disaccharides)

  • 김효갑;정승용;정희성;마영대
    • 폴리머
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    • 제36권6호
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    • pp.776-788
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    • 2012
  • 셀로비오스, 말토오스 그리고 락토오스를 1-{4-(4'-시아노페닐아조)펜옥시}옥틸브롬 혹은 1-{4-(4'-시아노페닐아조)펜옥시카보닐}헵타노일 클로라이드와 반응시켜 옥타[8-{4-(4'-시아노페닐아조)펜옥시}]옥틸 그리고 옥타[8-{4-(4'-시아노페닐아조)펜옥시카보닐}]헵타노화 이당류 유도체들을 합성함과 동시에 이들의 열방성 액정과 광화학적 상전이 거동을 검토하였다. 모든 {(시아노페닐아조)펜옥시}옥틸 이당류 에테르들(CADETs)은 단방성 네마틱(N) 상들을 형성하는 반면 모든 {(시아노페닐아조)펜옥시카보닐}헵타노화 이당류 에스터들(CADESs)은 양방성 N 상들을 형성하였다. CADETs에 비해, CADESs는 높은 액체(I) 상에서 N 상으로의 전이 온도들을 나타냈다. 유리 셀 혹은 러빙된 폴리이미드(PI) 배향막을 지닌 셀 중에서 N 상을 형성하고 있는 이당류 유도체에 광을 조사시킬 경우, 아조벤젠기의 trans-cis 이성화에 의해 N 상은 I 상으로 변하였다. 한편, 광 조사시켜 얻은 시료를 광을 차단한 상태로 방치할 경우 열에 의한 cis-trans 이성화와 trans 아조벤젠기들의 재배열로 인하여 I 상은 최초의 N 상으로 변하였다. 유리 셀의 경우에 비해 러빙된 PI 배향막을 지닌 셀의 경우가 이당류 유도체들의 광화학적 N-I 그리고 열적 I-N 상전이 속도들은 빠르며 시아노아조벤젠기를 지닌 monomesogenic 화합물들 그리고 4-{4'-(시아노페닐아조)펜옥시}옥틸 글루코오스 그리고 셀룰로오스 에테르들에 대해 관찰되는 결과들에 비해 현저히 달랐다. 이러한 결과를 주사슬의 유연성, 반복단위당에 도입된 메소겐기들의 수 그리고 아조벤젠기들간의 거리에 기인한 아조벤젠기들의 협동효과의 차이의 견지에서 검토하였다.

이온 빔 조사된 SiNx 박막의 전기 광학적 특성에 관한 연구 (Investigation on EO Characteristics of SiNx Thin Film Irradiated by Ion-beam)

  • 이상극;오병윤;김병용;한진우;김영환;옥철호;김종환;한정민;서대식
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2007년도 추계학술대회 논문집
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    • pp.429-429
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    • 2007
  • For various applications of liquid crystal displays (LCDs), the uniform alignment of liquid crystal (LC) molecules on treated surfaces is significantly important. Generally, a rubbing method has been widely used to align the LC molecules on polyimide (PI) surfaces. Rubbed PI surfaces have suitable characteristics, such as uniform alignment. However, the rubbing method has some drawbacks, such as the generation of electrostatic charges and the creation of contaminating particles. Thus, we strongly recommend a non contact alignment technique for future generations of large high-resolution LCDs. Most recently, the LC aligning capabilities achieved by ultraviolet and ion-beam exposures which are non contact methods, on diamond-like carbon (DLC) inorganic thin film layers have been successfully studied because DLC thin films have a high mechanical hardness, a high electrical resistivity, optical transparency, and chemical inertness. In addition, nitrogen-doped DLC (NDLC) thin films exhibit properties similar to those of the DLC thin films and a higher thermal stability than the DLC thin films because C:N bonding in the NDLC thin filmsis stronger against thermal stress than C:H bonding in the DLC thin films. Our research group has already studied the NDLC thin films by an ion-beam alignment method. The $SiN_x$ thin films deposited by plasma-enhanced chemical vapor deposition are widely used as an insulation layer for a thin film transistor, which has characteristics similar to those of DLC inorganic thin films. Therefore, in this paper, we report on LC alignment effects and pretilt angle generation on a $SiN_x$, thin film treated by ion-beam irradiation for various N ratios

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이온빔 에너지에 따른 액정배향막의 전기광학적 특성연구 (Properties of liquid crystal alignment layers exposued to ion-beam irradiation enemies)

  • 오병윤;이강민;박홍규;김병용;강동훈;한진우;김영환;한정민;이상극;서대식
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2007년도 추계학술대회 논문집
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    • pp.430-430
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    • 2007
  • In general, polyimides (PIs) are used in liquid crystal displays (LCDs) as alignment layer of liquid crystals (LCs). Up to date, the rubbing alignment technique has been widely used to align liquid crystals on the PI surface, which is suitable for mass-production of LCDs because of its simple process and high productivity. However, this method has some disadvantages. Rubbed PI surfaces include the debris left by the cloth and the generation of electrostatic charges during rubbing process. Therefore, rubbing-free techniques for LC alignment are strongly required in LCD technology. In this experiment, PI was uniformly coated on indium-tin-oxide electrode substrates to form LC alignment layers using a spin-coating method and the PI layers were subsequently imidized at 433 K for 1 h. The thickness of the PI layer was set at 50 nm. The LC alignment layer surfaces were exposed to an $Ar^+$ ion-beam under various ion-beam energies. The antiparallel cells and twisted-nematic (TN) cells for the measurement of pretile angle and electro-optical characteristics were fabricated with the cell gap of 60 and $5\;{\mu}m$, respectively. The LC cells were filled with nematic LC (NLC, MJ001929, Merck) and were assembled. The NLC alignment capability on ion-beam-treated PI was observed using photomicroscope and the pretilt angle of the NLC was measured by the crystal-rotation method at room temperature. Voltage-transmittance (V-T) and response time characteristics of the ion-beam irradiated TN cell were measured by a LCD evaluation system.

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