• Title/Summary/Keyword: Plastic substrate

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Development of a Low Temperature Doping Technique for Applications in Poly-Si TFT on Plastic Substrates

  • Hong, Wan-Shick;Kim, Jong-Man
    • Journal of Information Display
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    • v.4 no.3
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    • pp.17-21
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    • 2003
  • A low temperature doping technique to be applied in poly-Si TFTs on plastic substrates was investigated. Heavily-doped amorphous silicon layers were deposited on poly-Si and the dopant atoms were driven in by subsequent excimer laser annealing. The entire process was carried out under a substrate temperature of 120 $^{\circ}C$, and a sheet resistance of as low as 300 ${\Omega}$/sq. was obtained.

Excimer laser crystallization of sputtered a-Si films on plastic substrates

  • Cho, Hans-S;Jung, Ji-Sim;Kim, Do-Young;Park, Young-Soo;Park, Kyung-Bae;Kwon, Jang-Yeon;Noguchi, Takashi
    • 한국정보디스플레이학회:학술대회논문집
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    • 2004.08a
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    • pp.962-965
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    • 2004
  • In this work, thin films of amorphous silicon (a-Si) were formed on plastic substrates by sputtering deposition and crystallized using excimer laser irradiation. As the entire process is conducted at room temperature, and the laser irradiation-induced heating is confined to the thin film, the plastic substrate is not subjected to thermal stresses. The microstructure resulting from the laser irradiation was dependent on the laser irradiation energy density and the composition of the underlying buffer layers. It was found that a layer of AlN deposited as a buffer between the plastic and the a-Si film increased the endurance of the a-Si film under laser irradiation, and resulted in polycrystalline Si grains up to 100nm in diameter.

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Fabrication of plastic CE (capillary electrophoresis) microchip by hot embossing process (핫 엠보싱 공정을 이용한 플라스틱 CE(capillary electrophoresis) 마이크로 칩의 제작)

  • Cha Nam-Goo;Park Chang-Hwa;Lim Hyun-Woo;Park Jin-Goo
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2005.06a
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    • pp.1140-1144
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    • 2005
  • A plastic-based CE (capillary electrophoresis) microchip was fabricated by hot embossing process. A Si mold was made by wet etching process and a PMMA wafer was cut off from 1mm thick PMMA sheet. A micro-channel structure on PMMA substrate was produced by hot embossing process using the Si mold and the PMMA wafer. A vacuum assisted thermal bonding procedure was employed to seal an imprinted PMMA wafer and a blank PMMA wafer. The results of microscopic cross sectional images showed dimensions of channels were well preserved during thermal bonding process. In our procedure, the deformation amount of bonding process was below 1%. The entire fabrication process may be very useful for plastic based microchip systems.

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Electrical Characteristics of Organic Thin Film Transistors with Dual Layer Insulator on Plastic Substrates (이중 절연막 구조를 가전 플라스틱 유기 박막트랜지스터의 전기적 특성)

  • 최승진;이인규;박성규;김원근;문대규
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2002.07a
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    • pp.194-197
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    • 2002
  • Applying dual layer insulator on plastic substrates improved electrical characteristics of organic thin film transistor(TFT). A high-quality silicon dioxide(SiO$_2$) suitable for a insulator was deposited on plastic substrates by e-beam evaporation at 110$^{\circ}C$. The insulator film which was treated by N$_2$ annealing at 150$^{\circ}C$ showed excellent I-V, C-V characteristics. The dual layer insulator structure of polyimide-SiO$_2$ improved the roughness of SiO$_2$ surface and showed very low leakage current. In addition, the flat band voltage has been reduced from -2.5V to about 0.5V.

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Large Size Plastic Display for Outdoor Application

  • Roh, Nam-Seok;Hwang, Tae-Hyung;Lee, Woo-Jae;Hong, Wang-Su;Kim, Sung-Jin;Kim, Sang-Il;Shin, Peter
    • 한국정보디스플레이학회:학술대회논문집
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    • 2007.08a
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    • pp.255-256
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    • 2007
  • A A4 size black and white reflective plastic display was developed for out door application. For document readability, high resolution of 180ppi plastic TFT backplane and high reflectance electrophoretic front panel sheet was used. Preparation of display was held near $100^{\circ}C$ process on PEN substrate.

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Numerical Analysis of Heat Flow and Thermal Deformation in Transmission Joining of Polymers Using Nd:YAG Laser (Nd:YAG 레이저를 이용한 폴리머의 투과접합에서 열 유동 및 열 변형 해석)

  • Cha, Sang-Woo;Kim, Jin-Beom;Na, Suck-Joo
    • Journal of Welding and Joining
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    • v.24 no.6
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    • pp.28-32
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    • 2006
  • Laser Transmission Joining (LTJ), which is a joining process of polymers by using different transmission rates of materials, was studied numerically. Unlike previous studies, energy loss by reflection at the surface was included. Besides, energy absorbed in the transparent substrate is also considered to increase the accuracy of the analytical results. Furthermore, thermal deformations of the substrates were also calculated. Temperature distribution of the substrates on the joining process could be effectively predicted by using the thermal analysis model developed, which could also analyze the rising phenomenon of the absorbing substrate by bulge effect. Calculated results show that temperature of the absorbing substrate is higher than that of transparent substrate when the laser is being radiated, and this temperature difference causes more thermal deformation in absorbing substrate, which results in the surface rise of the absorbing substrate. Comparison of calculated results with corresponding experimental results could confirm the validity of the numerical analysis model proposed.

Synthesis and Film Properties of Cross-linked Polysulfone with Imide Side Chain (이미드 곁가지로 가교되는 폴리설폰의 합성 및 필름 특성)

  • Lee Eun-Sang;Hong Sung-Kwon;Kim Yong-Seok;Lee Jae-Heung;Kim In-Sun;Won Jong-Chan
    • Polymer(Korea)
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    • v.30 no.2
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    • pp.140-145
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    • 2006
  • The mort commonly available substrate material is glass in the display fibrication process. However, glass is not desirable due to its heaviness and fragility. Recently, plastics such polysulfone (PSF), polyethesulfone (PES), polycarbonate (PC), polyethylene terephthalate (PET) and cyclic olefin polymers (COP) have been investigated to replace glass as a substrate material for display fibrication. Plastic substrates are advantageous in that they are lightweight, huh impart resistance, flexibility, and ability for roll to roll manufacturing process. But many plastics have poor chemical resistance in organic solvent. The chemica resistance is also lequired because they are exposed to solvents for various chemical treatments din the manufacturing process. So, we have an interest in the chemical modification of PSF to improve chemical resistance. We introduced crosslinkable imide moieties using chloromethylation method for the modification of PSF which could be overcome above shortcomings for display substrate based on plastic film. We prepared the cross-linked polysulfone films which were represented chemical resistance in HeOH, THF, DMSO and NMP. The thermal properties were measured by TGA, DSC and TMA. As the results, we have confirmed to enhance of the thermal property. They had low coefficient of thermal expansion (CTE) which decreased to 15% and had increased $T_g\;from\;180^{\circ}C\;to\;252^{\circ}C$. Cross-linked polysulfone films with imide side-chain had good optical properties and chemical resistance so that they could be used as flexible display substrate.

Studies on Various Test Conditions and Application of Test Method for Lipoxygenase-l in Soybean (콩의 Lipoxygenase-1 신속 검정방법 확립)

  • 조준형;김영미;윤홍태;김용호;김용욱;김명애
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.42 no.6
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    • pp.739-747
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    • 1997
  • This study was performed to clarify various conditions on the test of lipoxygenase-l and to establish the application of new test method for varietal improvement of soybeans in order to decrease beany flavors. Potassium borate and Tris were used as buffer and O.1M potassium borate solution showed the best result for the lipoxygenase-l test. In the range of pH 8.5~9.0 of the buffer, 2mM linoleic acid as substrate was effective. For color development, 100$\mu$l of two solutions(KI and starch) were added to the half soybean seed, successively. The substrate solution included linoleic acid was stored safely for 10 days at 4$^{\circ}C$ in refrigerator and for 4 days at room temperature. The best result was as follows; the 1ml of substrate solution[0.1M potassium borate(pH 9.0), 0.1% Tween-20, 2mM linoleic acid] was added to the chipped half soybean seed in l.5ml plastic tube, waited for 15 minutes, and 100$\mu$l of color development solutions(5% saturated KI in 15% acetic acid, 1% starch) were added to the tube, successively. After 4 hours, the purple color was observed in the upper phase of the plastic tube in the presence of lipoxygenase-1 and milky color in absence of lipoxygenase-1. The purple color was stable from 4 to 24 hours. There was no interfering effect by lipoxygenase-2 and -3. The plastic tube should be placed in the tube stand without shaking during the lipoxygenase-l test.

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Influence of Various Substrates on the Growth and Yield of Organically Grown Ginseng Seedlings in the Shaded Plastic House (상토의 물리.화학성이 시설하우스 묘삼의 생육에 미치는 영향)

  • Choi, Jae-Eul;Lee, Nu-Ri;Han, Jin-Soo;Kim, Jeong-Sun;Jo, Seo-Ri;Shim, Chang-Yong;Choi, Jong-Myung
    • Korean Journal of Medicinal Crop Science
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    • v.19 no.6
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    • pp.441-445
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    • 2011
  • This research was conducted to investigate the influence of variouis organic substrates on growth and yield of organically grown ginseng seedlings in a shaded plastic house. In the investigation of optimal substrate, the eight substrate were formulated by adjusting blending rate of peatmoss, perlite, coir dust(coco peat), and vermiculite. Then, the changes in physico chemical properties of root substrates as well as their influences on the growth characteristics and yield were determined at six months after sowing. The elevation of the blending rate of peatmoss from 50% to 70% with decrease in the rate of inorganic component (mixture of perlite and vermiculite) from 50 to 30% resulted in the increase in container capacities and decrease in total porosities and air-filled capacities. The concentrations of $NH_4-N$, $P_2O_5$ and K increased as the incorporation rate of castor seed meal, phosphate ore, and langbenite, respectively, were elevated during the root medium formulations. The PPV-1 and PPV-4 substrates produced high stem length, stem diameter, shoot fresh weight, leaf area and root length among eight substrate. Root fresh weight was heaviest in PPV-4 compound nursery media. The results of this experiment will be utilized in the new substrate application for ginseng organic culture in shaded vinyl house.

Electrical and Mechanical Properties of Indium-tin-oxide Films Deposited on Polymer Substrate Using Organic Buffer Layer

  • Han, Jeong-In;Lee, Chan-Jae;Rark, Sung-Kyu;Kim, Won-Keun;Kwak, Min-GI
    • Journal of Information Display
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    • v.2 no.2
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    • pp.52-60
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    • 2001
  • The electrical and mechanical properties in indium-tin-oxide films deposited on polymer substrate were examined. The materials of substrates were polyethersulfone (PES) which have gas barrier layer and anti-glare coating for plastic-based devices. The experiments were performed by rf-magnetron sputtering using a special instrument and buffer layers. Therefore, we obtained a very flat polymer substrate deposited ITO film and investigated the effects of buffer layers, and the instrument. Moreover, the influences of an oxygen partial pressure and post-deposition annealing in ITO films deposited on polymer substrates were clarified. X-ray diffraction observation, measurement of electrical property, and optical microscope observation were performed for the investigation of micro-structure and electro-mechanical properties, and they indicated that as-deposited ITO thin films are amorphous and become quasi-crystalline after adjusting oxygen partial pressure and thermal annealing above $180^{\circ}C$. As a result, we obtained 20-25 ${\Omega}/sq$ of ITO films with good transmittance (above 80 %) of oxygen contents with under 0.2 % and vacuum annealing. Furthermore, using organic buffer layer, we obtained ITO films which have a rather high electrical resistance (40-45 ${\Omega}/sq$) but have improved optical (more than 85 %) and mechanical characteristics compared to the counterparts. Consequently, a prototype reflective color plastic film LCD was fabricated using the PES polymer substrates to confirm whether the ITO films could be realized in accordance with our experimental results.

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