• Title/Summary/Keyword: Indium-Tin Oxide

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Development of magnetron sputtering system for Al thin film decomposition with high uniformity (고균일 Al 박막 증착을 위한 magnetron sputtering system 개발)

  • Lee, J.H.;Hwang, D.W.
    • Journal of the Korean Vacuum Society
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    • v.17 no.2
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    • pp.165-169
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    • 2008
  • It is very important to decompose uniformly the metal film in semiconductor devices process. The thickness uniformity of the ITO film by standard magnetron sputtering system are about $\pm4%\sim\pm5%$ and the center of the wafer is more thick than the edge of the wafer. We designed and made the discharge electrode structure and controlled the direction of sputtering materials in magnetron sputtering system. The thickness uniformity are increased to $\pm0.8\sim1.3%$ in 4" wafer using the new sputtering gun in magnetron sputtering system. In wafer to wafer thickness uniformity, $\pm$5.3% are increased to $\pm$1.5% using the new sputtering gun. The thickness uniformity of the Al film are about $\pm$1.0% using the new sputtering gun in magnetron sputtering system.

전기 화학적 방법으로 성장한 SnO2 나노구조의 광학적 및 전기적 특성

  • Lee, Dae-Uk;Yun, Dong-Yeol;Kim, Tae-Hwan
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.368.2-368.2
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    • 2014
  • $SnO_2$을 이용한 반도체는 기체 센서, 트랜지스터, 태양전지와 같은 여러 분야에 적용 가능하기 때문에 많은 각광을 받고 있다. $SnO_2$을 이용한 반도체 소자는 높은 화학적 안정성과 독특한 물리 화학적 특성을 지니고 있을 뿐만 아니라 부피에 대한 높은 표면적 비율을 가지고 있다. 우수한 $SnO_2$나노구조를 얻기 위해서 전자관 박막증착, 졸겔법, 물리적 증기증착, 열증착과 같은 다양한 방법들이 사용되었다. 다양한 합성 방법들 중에서 전기화학 증착법은 높은 성장율, 대면적 공정, 낮은 가격과 같은 장점을 가지고 있어 많은 연구가 진행되었지만, $SnO_2$ 구조의 성장조건에 따른 체계적인 연구는 진행되지 않았다. 본 연구는 indium-tin-oxide (ITO)로 코팅된 유리 기판 위에 전기화학 증착법을 사용하여 다양한 성장 조건에 따라 성장된 $SnO_2$나노구조들의 물리적 특성들을 관찰하였다. ITO 유리 기판 위에 성장된 $SnO_2$나노구조는 음극의 전구체와 전류의 상호작용에 의해 생성되는 산소 분자의 환원에 의해 형성된다. $SnO_2$나노구조의 모양은 전기화학 증착의 성장 환경에 따라 달라진다. $SnO_2$나노구조를 관찰하기 위해 시간에 따른 전압-전류, X-ray광전자분광법, 주사형전자현미경, X-ray회절분석법을 사용하여 측정하였다. ITO 유리 기판 위에 성장한 $SnO_2$ 소자에 서로 다른 인가 전압을 가해 주었을 때에 따른 전류밀도를 측정하였다. 일정한 인가전압에서 $SnO_2$나노구조의 X-ray광전자분광법 측정 을 통해 화학적 결합과 X-ray회절분석법 통한 $SnO_2$ 성장 방향을 관찰하였다. 주사형전자현미경 측정을 통하여 $SnO_2$의 표면을 관찰하였다

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Analysis of Stacked and Multi-layer Graphene fot the Fabrication of LEDs

  • Kim, Gi-Yeong;Min, Jeong-Hong;Jang, So-Yeong;Lee, Jun-Yeop;Park, Mun-Do;Kim, Seung-Hwan;Jeon, Seong-Ran;Song, Yeong-Ho;Lee, Dong-Seon
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.433.1-433.1
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    • 2014
  • The research of graphene, a monolayer of carbon atoms with honeycomb lattice structure, has explosively increased after appeared in 2004. As a result, its high transmittance, mobility, thermal conductivity, and outstanding mechanical and chemical stability have been proved. Especially, many researches were executed about the field of transparent electrode highlighting material of substituting the indium tin oxide (ITO). In addition, qualitative and quantitative improvements have been achieved due to many synthesis methods were discovered. Among them, mostly used method is chemical vapour deposition of graphene grown on copper or nickel. The transmittance, mobility, sheet resistance, and other many properties are completely changed according to these two types of synthesis method of graphene. In this research, considering the difference of characteristics as the synthesis method of graphene, what types of graphene should be used and how to use it were studied. The stacked graphene harvested on copper and multi-layer graphene harvested on nickel were compared and analyzed, as a result, the transmittance of 90% and the sheet resistance of $70{\Omega}{\square}$ was showed even though stacked graphene layers were 4 layers. The reason that could bring these results is lowered sheet resistance due to stacked monolayer graphenes. Moreover, light output power of the three stacked graphene spreading layer shows the highest value, but light-emitting diode with multi-layer graphene died out from 12mA due to also its high sheet resistance. Therefore, we need to clarify about what types of graphene and how to use the graphene in use.

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Improve the Transparency of Liquid Crystal Display Using Hybrid Conductive Films Based on Carbon Nanomaterials

  • Shin, Seung Won;Kim, Ki-Beom;Jung, Yong Un;Hur, Sung-Taek;Choi, Suk-Won;Kang, Seong Jun
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.241.2-241.2
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    • 2014
  • We present highly transparent liquid crystal displays (LCDs) using hybrid films based on carbon nanomaterials, metal grid, and indium-tin-oxide (ITO) grid. Carbon based nanomaterials are used as transparent electrodes because of high transmittance. Despite of their high transmittance they have relatively high sheet resistance. To solve this problem, we applied grid and made hybrid conductive films based on carbon nanomaterials. Conventional photolithography processes were used to make a grid pattern of metal and ITO. To fabricate transparent conductive films, carbon nanotube (CNT) ink was spin coated on the grid pattern. The transparency of the conductive film was controlled by shape and size of the grid pattern and the thickness of CNT films. The optical transmittance of CNT-based hybrid films is 92.2% and sheet resistance is also reduced to $168{\Omega}/square$. These substrates were used for the fabrication of typical twisted nematic (TN) LCD cells. From the characteristics of LCD devices such as transmittance, operating voltage, voltage holding ratio our devices were comparable to those of pristine ITO substrates. The result shows that the hybrid conductive films based on carbon nanomaterials could be alternative of ITO for the highly transparent LCDs.

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Red Organic LED with Dual Dopants of Rubrene and GDI 4234 (Rubrene/GDl 4234 Dual 도펀트를 이용한 적색 유기발광다이오드)

  • Jang, Ji-Geun;Kang, Eui-Jung;Kim, Hee-Won;Shin, Se-Jin;Gong, Myoung-Sun;Lim, Sung-Kyoo;Oh, Myoung-Hwan
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2005.11a
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    • pp.309-310
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    • 2005
  • In the fabrication of high performance red organic light emitting diode, 2-TNA TA [4,4',4" -tris (2-naphthylphenyl- phenylamino)-triphenylamine] as hole injection material and N PH [N,N'-bis (1-naphthyl) -N,N' -diphenyl-1, 1'-biphenyl-4,4'- diamine] as hole transport material were deposited on the ITO (indium tin oxide)/glass substrate by vacuum evaporation, And then, red color emission layer was deposited using Alq3 as a host material and Rubrene (5,6,11,12- tetraphenylnaphthacene) and GDI 4234 as dopants. Finally, small molecular weight OLED with the structure of ITO/2-TNATA/ NPB/Alq3+Rubrene+GDI4234/Alq3/LiF/Al was obtained by in-situ deposition of Alq3, LiF and Al as electron transport material, electron injection material and cathode. respectively. Green OLED fabricated in our experiments showed the color coordinate of CIE(0.65,0.35) and the maximum luminescence efficiency of 2.1 lm/W at 7 V with the peak emission wavelength of 632 nm.

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A Study on Adhesion and Electro-optical Properties of ITO Films Deposited on Flexible PET Substrates with Deposition of SiO2 Buffer Layers (PET 기판 위에 SiO2 버퍼층 증착에 따른 ITO 박막의 부착 및 전기적 광학적 특성 연구)

  • Kang, Ja-Youn;Kim, Dong-Won;Cho, Kyu-Il;Woo, Byung-Il;Yun, Hwan-Jun
    • Journal of the Korean institute of surface engineering
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    • v.42 no.1
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    • pp.21-25
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    • 2009
  • Using an evaporation system, $SiO_2$ was deposited as a buffer layer between a PET substrate and a ITO layer and then ITO/$SiO_2$/PET layers were annealed for 1.5 hours at the temperature of $180^{\circ}C$. Adhesion and electro-optical properties of ITO films were studied with thickness variance of a $SiO_2$ buffer layer. As a result of introduction of the $SiO_2$ buffer layer, sheet resistance and resistivity increased and a ITO film with optimum sheet resistance ($529.3{\Omega}/square$) for an upper ITO film of resistive type touch panel could be obtained when $SiO_2$ of $50{\AA}$ was deposited. And it was found that ITO films with $SiO_2$ buffer layer have higher transmittance of $88{\sim}90%$ at 550 nm wavelength than ITO films with no buffer layers and the transmittance was enhanced as $SiO_2$ thickness increased from $50{\AA}$ to $100{\AA}$. Adhesion property of ITO films with $SiO_2$ buffer layers became better than ITO films with no buffer layers and this property was independent of $SiO_2$ thickness variance ($50{\sim}100{\AA}$). By depositing a $SiO_2$ buffer layer of $50{\AA}$ on the PET substrate and sputtering a ITO thin film on the layer, a ITO film with enhanced adhesion, electro-optical properties could be obtained.

Electrochemical Properties of Langmuir-Blodgett(LB) Films of Fatty Acid Containing Azobenzene and $L-{\alpha}-dimyristoylphosphatidylcholine$ Mixture (아조벤젠기를 가진 지방산과 $L-{\alpha}-dimyristoylphosphatidylcholine$ 혼합 LB막의 전기화학적 특성)

  • Park, Keun-Ho;Choi, Sung-Hyun;Song, Ju-Yeong
    • Journal of the Korean Applied Science and Technology
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    • v.22 no.4
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    • pp.315-322
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    • 2005
  • We investigated the electrochemical properties for Langmuir-Blodgett (LB) films mixed with 4-octyl-4'-(5-carboxylpentamethyleneoxy)azobenzene (denoted as 8A5H) and $phospholipid(L-{\alpha}-dimyristoylphosphatidylcholine$, denoted as DMPC). LB films of 8A5H monolayer and 8A5H-DMPC were deposited by using the Langmuir-Blodgett method on the indium tin oxide(ITO) glass. The electrochemical properties measured by using cyclic voltammetry with a three_electrode system, an Ag/AgCl reference electrode, a platinum wire counter electrode and LB film-coated ITO working electrode at various concentrations(0.1, 0.5, and 1.0mol/L) of $NaClO_4$ solution. A measuring range was reduced from initial potential to -1350mV, continuously oxidized to 1650mV and measured to the initial point. The scan rates were 50, 100, 150 and 200mV/s, respectively. As a result, LB films of 8A5H monolayer appeared irreversible process caused by only the oxidation current from the cyclic voltammogram and LB films of 8A5H-DMPC mixture were found to be caused by a reversible oxidation-reduction process.

Selective Removal of Thin Film on Glass Using Femtosecond Laser (펨토초 레이저 응용 선택적 어블레이션 연구)

  • Yu, J.Y.;Cho, S.H.;Park, J.K.;Yoon, J.W.;Whang, K.R.;Sugioka, K.;Hong, J.W.;Heo, W.R.;Boehme, D.;Park, J.H.;Zander, S.
    • Laser Solutions
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    • v.14 no.2
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    • pp.17-23
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    • 2011
  • Active thin films are ubiquitous in the manufacture of all forms of flat panel display (FPD). One of the most widely employed thin films is indium tin oxide (ITO) and metal films used electrically conductive materials in display industries. ITO is widely used for fabrication of LCD, OLED device, and many kinds of optical applications because of transparency in visible range and its high conductivity and metal films are also widely employed as electrodes in various electric and display industries. It is important that removing specific area of layer, such as ITO or metal film on substrate, to fabricate and repair electrode in display industries. In this work, we demonstrate efficient selective ablation process to ITO and aluminum film on glass using a femtosecond laser (${\lambda}p=1025nm$) respectively. The femtosecond laser with wavelength of 1025nm, pulse duration of 400fs, and the repetition rate of 100kHz was used for selectively removing ITO and Al on glass in the air. We can successfully remove the ITO and Al films with various pulse energies using a femtosecond laser.

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Size-homogeneous gold nanoparticle decorated on graphene via MeV electron beam irradiation

  • Kim, Yoo-Seok;Song, Woo-Seok;Jeon, Cheol-Ho;Kim, Sung-Hwan;Park, Chong-Yun
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.487-487
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    • 2011
  • Recently graphene has emerged as a fascinating 2D system in condensed-matter physics as well as a new material for the development of nanotechnology. The unusual electronic band structure of graphene allows it to exhibit a strong ambipolar electric field effect with high mobility. These properties lead to the possibility of its application in high-performance transparent conducting films (TCFs). Compared to indium tin oxide (ITO) electrodes, which have a typical sheet resistance of ${\sim}60{\Omega}$/sq and ~85 % transmittance in the visible range (400?900 nm), the CVD-grown graphene electrodes have a higher/flatter transmittance in the visible to IR region and are more robust under bending. Nevertheless, the lowest sheet resistance of the currently available CVD graphene electrodes is higher than that of ITO. Here, we report an ingenious strategy, irradiation of MeV electron beam (e-beam) at room temperature under ambient condition, for obtaining size-homogeneous gold nanoparticle decorated on graphene. The nano-particlization promoted by MeV e-beam irradiation was investigated by transmission electron microscopy, electron energy loss spectroscopy elemental mapping, and energy dispersive X-ray spectroscopy. These results clearly revealed that gold nanoparticle with 10 ~ 15 nm in mean size were decorated along the surface of the graphene after 1.5 MeV-e-beam irradiation. A chemical transformation and charge transfer for the metal gold nanoparticle were systematically explored by X-ray photoelectron spectroscopy and Raman spectroscopy. This approach advances the numerous applications of graphene films as transparent conducting electrodes.

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은 도핑 효과를 이용한 그래핀 투명 전도성 필름의 전기적 특성 향상

  • Jeong, Sang-Hui;Lee, Su-Il;Kim, Yu-Seok;Song, U-Seok;Kim, Seong-Hwan;Cha, Myeong-Jun;Park, Sang-Eun;Min, Gyeong-Im;Park, Jong-Yun
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.02a
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    • pp.566-566
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    • 2012
  • 그래핀(Graphene)은 모든 탄소 동소체의 기본구성 요소로 2 차원 결정구조를 가지며, 양자홀 효과(quantum Hall effect), 뛰어난 열 전도도, 고 탄성, 광학적 투과성 등과 같은 탁월한 물리적 성질을 보이는 물질이다. 이러한 그래핀의 우수한 특성은 전계 효과 트랜지스터(field effect transistor), 화학/바이오 센서, 투명 전극(transparent electrode) 등의 다양한 전자소자를 개발하는 응용 가능하다. 그 중, 그래핀 투명전극의 제조는 가장 응용가능성이 높은 분야이다. 현재 투명전극 물질로는 인듐-주석 산화물(indium tin oxide; ITO)가 널리 이용되고 있으나, 인듐의 고갈로 인한 공급부족 문제 및 고 생산비용, 휘어지지 않는 취성 등의 단점을 지니고 있다. 따라서, 우수한 광학적 투과성과 전기전도성을 지닌 그래핀이 ITO의 대체 물질로서 각광받고 있다.[1-5] 본 연구에서는 그래핀의 투명전도필름의 응용을 위해 면저항을 낮추기 위한 방법으로 화학적 도핑(doping)을 이용하였다. 그래핀은 구리(copper; Cu) 호일을 촉매로 사용하여 열 화학증착법(Thermal Chemical Vapor Deposition)을 이용하여 합성하였다. 합성된 그래핀은 PMMA(Poly(methyl methacrylate)) 전사법을 이용하여 산화실리콘(SiO2) 기판에 전사 후, 염화은(AgCl)과 클로로벤젠(C6H5Cl)으로 만든 콜로이드(colloid) 용액에 디핑(dipping)하여 그래핀에 은 입자를 도핑 하였다. 그 결과, 은 입자 도핑 농도에 따라 면저항이 감소하는 양상을 보였다. 제작된 그래핀 투명전도성 필름의 투과도는 자외선-가시광선-근적외선 분광법(UV-Vis-NIR spectroscopy)를 이용하여 측정하였고, 라만 분광법(Raman spectroscopy)을 통해 그래핀 필름의 질적 우수성과 성장 균일도를 조사하였다.

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