• 제목/요약/키워드: Organic substrates

검색결과 626건 처리시간 0.032초

Electrochemical treatment of wastewater using boron doped diamond electrode by metal inter layer

  • KIM, Seohan;YOU, Miyoung;SONG, Pungkeun
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.251-251
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    • 2016
  • For several decades, industrial processes consume a huge amount of raw water for various objects that consequently results in the generation of large amounts of wastewater. Wastewaters are consisting of complex mixture of different inorganic and organic compounds and some of them can be toxic, hazardous and hard to degrade. These effluents are mainly treated by conventional technologies such are aerobic and anaerobic treatment and chemical coagulation. But, these processes are not suitable for eliminating all hazardous chemical compounds form wastewater and generate a large amount of toxic sludge. Therefore, other processes have been studied and applied together with these techniques to enhance purification results. These include photocatalysis, absorption, advanced oxidation processes, and ozonation, but also have their own drawbacks. In recent years, electrochemical techniques have received attention as wastewater treatment process that could be show higher purification results. Among them, boron doped diamond (BDD) attract attention as electrochemical electrode due to good chemical and electrochemical stability, long lifetime and wide potential window that necessary properties for anode electrode. So, there are many researches about high quality BDD on Nb, Ta, W and Si substrates, but, their application in effluents treatment is not suitable due to high cost of metal and low conductivity of Si. To solve these problems, Ti has been candidate as substrate in consideration of cost and property. But there are adhesion issues that must be overcome to apply Ti as BDD substrate. Al, Cu, Ti and Nb thin films were deposited on Ti substrate to improve adhesion between substrate and BDD thin film. In this paper, BDD films were deposited by hot filament chemical vapor deposition (HF-CVD) method. Prior to deposition, cleaning processes were conducted in acetone, ethanol, and isopropyl alcohol (IPA) using sonification machine for 7 min, respectively. And metal layer with the thickness of 200 nm were deposited by DC magnetron sputtering (DCMS). To analyze microstructure X-ray diffraction (XRD, Bruker gads) and field emission scanning electron microscopy (FE-SEM, Hitachi) were used. It is confirmed that metal layer was effective to adhesion property and improved electrode property. Electrochemical measurements were carried out in a three electrode electrochemical cell containing a 0.5 % H2SO4 in deionized water. As a result, it is confirmed that metal inter layer heavily effect on BDD property by improving adhesion property due to suppressing formation of titanium carbide.

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비정질 IZTO기반의 투명 박막 트렌지스터 특성 (Characteristics of amorphous IZTO-based transparent thin film transistors)

  • 신한재;이근영;한동철;이도경
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2009년도 하계학술대회 논문집
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    • pp.151-151
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    • 2009
  • Recently, there has been increasing interest in amorphous oxide semiconductors to find alternative materials for an amorphous silicon or organic semiconductor layer as a channel in thin film transistors(TFTs) for transparent electronic devices owing to their high mobility and low photo-sensitivity. The fabriction of amorphous oxide-based TFTs at room temperature on plastic substrates is a key technology to realize transparent flexible electronics. Amorphous oxides allows for controllable conductivity, which permits it to be used both as a transparent semiconductor or conductor, and so to be used both as active and source/drain layers in TFTs. One of the materials that is being responsible for this revolution in the electronics is indium-zinc-tin oxide(IZTO). Since this is relatively new material, it is important to study the properties of room-temperature deposited IZTO thin films and exploration in a possible integration of the material in flexible TFT devices. In this research, we deposited IZTO thin films on polyethylene naphthalate substrate at room temperature by using magnetron sputtering system and investigated their properties. Furthermore, we revealed the fabrication and characteristics of top-gate-type transparent TFTs with IZTO layers, seen in Fig. 1. The experimental results show that by varying the oxygen flow rate during deposition, it can be prepared the IZTO thin films of two-types; One a conductive film that exhibits a resistivity of $2\times10^{-4}$ ohm${\cdot}$cm; the other, semiconductor film with a resistivity of 9 ohm${\cdot}$cm. The TFT devices with IZTO layers are optically transparent in visible region and operate in enhancement mode. The threshold voltage, field effect mobility, on-off current ratio, and sub-threshold slope of the TFT are -0.5 V, $7.2\;cm^2/Vs$, $\sim10^7$ and 0.2 V/decade, respectively. These results will contribute to applications of select TFT to transparent flexible electronics.

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$YBa_2Cu_3O_{7-x}$ 결정입계 접합을 이용한 마이크로파 감지소자 (Microwave Detector Using $YBa_2Cu_3O_{7-x}$ Grain Boundary Junction)

  • 신중식;조창현;황두섭;김영근;위당문;천성순;신우석;배성준;홍승범
    • 한국재료학회지
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    • 제4권6호
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    • pp.681-686
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    • 1994
  • $YBa_{2}Cu_{3}O_{7-x}$결정입계 접합을 이용한 마이크로파 감지소자 $YBa_{2}Cu_{3}O_{7-x}$초전도체 박막을 화학증착법을 이용하여 $LaAIO_{3}$단결정 위에 증착하여 임계온도 90K이상 임계전류밀도 $10^5/A \textrm{cm}^2$(77K) 이상의 우수한 박막을 제작하였다. 이를 포토작업과 이온밀링을 실시하여 수 마이크로미터 크기의 브릿지 형태로 만든 후 이들의 전류전압 특성을 조사하였다. 브릿지에 입사된 마이크로파의 크기에 따라 브릿지 간의 임계전류값의 저하가 관찰되었으며 동시에 샤피로스텝을 관찰할 수 있었다.

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A New Strategy to Fabricate a Colloidal Array Templated $TiO_2$ Photoelectrode for Dye-sensitized Solar Cells

  • 이현정
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2011년도 춘계학술발표대회
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    • pp.8.1-8.1
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    • 2011
  • Nanocrystalline titanium dioxide ($TiO_2$) materials have been widely used as an electron collector in DSSC. This is required to have an extremely high porosity and surface area such that the dye can be sufficiently adsorbed and be electronically interconnected, resulting in the generation of a high photocurrent within cells. In particular, their geometrical structures and crystalline phase have been extensively investigated as important issues in improving its photovoltaic efficiency. In this study, we present a new strategy to fabricate a photoelectrode having a periodic structured $TiO_2$ film templated from 1D or 3D polystyrene (PS) microspheres array. Monodisperse PS spheres of various radiuses were used for colloidal array on FTO glasses and two types of photoelectrode structures with different $TiO_2$ materials were investigated respectively. One is the igloo-shaped electrode prepared by $TiO_2$ deposition by RF-sputtering onto 2D microsphere-templated substrates. At the interface between the film and substrate, there are voids formed by the decomposition of PS microspheres during the calcination step. These holes might be expected to play the predominant roles as scattering spherical voids to promote a light harvesting effect, a spacious structure for electrolytes with higher viscosity and effective paths for electron transfer. Additionally the nanocrystalline $TiO_2$ phase prepared by the RF-sputtering method was previously reported to improve the electron drift mobility within $TiO_2$ electrodes. This yields solar cells with a cell efficiency of 2.45% or more at AM 1.5 illumination, which is a very remarkable result, considering its $TiO_2$ electrode thickness (<2 ${\mu}m$). This study can be expanded to obtain higher cell efficiency by higher dye loading through the increase of surface area or multi-layered stacking. The other is the inverse opal photonic crystal electrode prepared by titania particles infusion within 3D colloidal arrays. To obtain the enlargement of ordered area and high quality of crystallinity, the synthesis of titania particles coated with a organic thin layer were applied instead of sol-gel process using the $TiO_2$ precursors. They were dispersed so well in most solvents without aggregates and infused successfully within colloidal array structures. This ordered mesoporous structure provides the large surface area leading to the enough adsorption of dye molecules and have an light harvesting effect due to the photonic band gap properties (back-and-forth reflection effects within structures). A major advantage of this colloidal array template method is that the pore size and its distribution within $TiO_2$ photoelectrodes are determined by those of latex beads, which can be controlled easily. These materials may have promising potentials for future applications of membrane, sensor and so on as well as solar cells.

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정공 주입층 및 수송층에 따른 고분자 유기발광다이오드의 특성 연구 (The Properties of Hole Injection and Transport Layers on Polymer Light Emitting Diode)

  • 신상배;장호정
    • 마이크로전자및패키징학회지
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    • 제14권4호
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    • pp.37-42
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    • 2007
  • 본 연구에서는 ITO/PEDOT:PSS/PFO:MEH-PPV/LiF/Al의 구조를 갖는 고분자 유기발광다이오드를 제작하여 정공 주입층으로 사용되는 PEDOT:PSS의 두께 변화와 PVK 정공 수송층을 도입하여 ITO/PEDOT:PSS/PVK/PFO:MEH-PPV/LiF/Al 구조를 갖는 고분자 유기발광 다이오드를 제작하여 정공수송층이 유기발광다이오드의 전기 광학적 특성에 미치는 영향에 대하여 조사, 비교하였다. 실험에 사용된 모든 유기물은 플라즈마 처리된 ITO/glass 기판위에 스핀 코팅법으로 도포하였다. 정공 주입층인 PEDOT:PSS 두께를 약 80 nm에서 50 nm로 감소한 경우 PLED 소자의 휘도는 약 $220cd/m^2$ 에서 $450cd/m^2$으로 크게 증가하였다. 이러한 결과는 정공 주입층의 두께가 감소할수록 ITO 전극에서 발생한 정공이 보다 쉽게 발광막으로 전달되기 때문이다. 또한 PVK 정공 수송층을 도입한 PLED소자에서 최대 전류밀도와 휘도는 $268mA/cm^2$$540cd/m^2$ (at 12V)의 값을 각각 나타내었다. PVK 정공 수송층이 도입되지 않은 소자에 비해 전류밀도는 약 14%, 휘도는 약 22%의 특성개선을 나타내었다.

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Laser crystallization in active-matrix display backplane manufacturing

  • Turk, Brandon A.;Herbst, Ludolf;Simon, Frank;Fechner, Burkhard;Paetzel, Rainer
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2008년도 International Meeting on Information Display
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    • pp.1261-1262
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    • 2008
  • Laser-based crystallization techniques are ideally-suited for forming high-quality crystalline Si films on active-matrix display backplanes, because the highly-localized energy deposition allows for transformation of the as-deposited a-Si without damaging high-temperature-intolerant glass and plastic substrates. However, certain significant and non-trivial attributes must be satisfied for a particular method and implementation to be considered manufacturing-worthy. The crystallization process step must yield a Si microstructure that permits fabrication of thin-film transistors with sufficient uniformity and performance for the intended application and, the realization and implementation of the method must meet specific requirements of viability, robustness and economy in order to be accepted in mass production environments. In recent years, Low Temperature Polycrystalline Silicon (LTPS) has demonstrated its advantages through successful implementation in the application spaces that include highly-integrated active-matrix liquid-crystal displays (AMLCDs), cost competitive AMLCDs, and most recently, active-matrix organic light-emitting diode displays (AMOLEDs). In the mobile display market segment, LTPS continues to gain market share, as consumers demand mobile devices with higher display performance, longer battery life and reduced form factor. LTPS-based mobile displays have clearly demonstrated significant advantages in this regard. While the benefits of LTPS for mobile phones are well recognized, other mobile electronic applications such as portable multimedia players, tablet computers, ultra-mobile personal computers and notebook computers also stand to benefit from the performance and potential cost advantages offered by LTPS. Recently, significant efforts have been made to enable robust and cost-effective LTPS backplane manufacturing for AMOLED displays. The majority of the technical focus has been placed on ensuring the formation of extremely uniform poly-Si films. Although current commercially available AMOLED displays are aimed primarily at mobile applications, it is expected that continued development of the technology will soon lead to larger display sizes. Since LTPS backplanes are essentially required for AMOLED displays, LTPS manufacturing technology must be ready to scale the high degree of uniformity beyond the small and medium displays sizes. It is imperative for the manufacturers of LTPS crystallization equipment to ensure that the widespread adoption of the technology is not hindered by limitations of performance, uniformity or display size. In our presentation, we plan to present the state of the art in light sources and beam delivery systems used in high-volume manufacturing laser crystallization equipment. We will show that excimer-laser-based crystallization technologies are currently meeting the stringent requirements of AMOLED display fabrication, and are well positioned to meet the future demands for manufacturing these displays as well.

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Control of electrical types in the P-doped ZnO thin film by Ar/$O_2$ gas flow ratio

  • Kim, Young-Yi;Han, Won-Suk;Kong, Bo-Hyun;Cho, Hyung-Koun;Kim, Jun-Ho;Lee, Ho-Seoung
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2008년도 추계학술대회 논문집 Vol.21
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    • pp.11-11
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    • 2008
  • ZnO has a very large exciton binding energy (60 meV) as well as thermal and chemical stability, which are expected to allow efficient excitonic emission, even at room temperature. ZnO based electronic devices have attracted increasing interest as the backplanes for applications in the next-generation displays, such as active-matrix liquid crystal displays (AMLCDs) and active-matrix organic light emitting diodes (AMOLEDs), and in solid state lighting systems as a substitution for GaN based light emitting diodes (LEDs). Most of these electronic devices employ the electrical behavior of n-type semiconducting active oxides due to the difficulty in obtaining a p-type film with long-term stability and high performance. p-type ZnO films can be produced by substituting group V elements (N, P, and As) for the O sites or group I elements (Li, Na, and K) for Zn sites. However, the achievement of p-type ZnO is a difficult task due to self-compensation induced from intrinsic donor defects, such as O vacancies (Vo) and Zn interstitials ($Zn_i$), or an unintentional extrinsic donor such as H. Phosphorus (P) doped ZnO thin films were grown on c-sapphire substrates by radio frequency magnetron sputtering with various Ar/ $O_2$ gas ratios. Control of the electrical types in the P-doped ZnO films was achieved by varying the gas ratio with out post-annealing. The P-doped ZnO films grown at a Ar/ $O_2$ ratio of 3/1 showed p-type conductivity with a hole concentration and hole mobility of $10^{-17}cm^{-3}$ and $2.5cm^2/V{\cdot}s$, respectively. X-ray diffraction showed that the ZnO (0002) peak shifted to lower angle due to the positioning of $p^{3-}$ ions with a smaller ionic radius in the $O^{2-}$ sites. This indicates that a p-type mechanism was due to the substitutional Po. The low-temperature photoluminescence of the p-type ZnO films showed p-type related neutral acceptor-bound exciton emission. The p-ZnO/n-Si heterojunction LEO showed typical rectification behavior, which confirmed the p-type characteristics of the ZnO films in the as-deposited status, despite the deep-level related electroluminescence emission.

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미세피치용 Cu/SnAg 더블 범프 플립칩 어셈블리의 신뢰성에 관한 연구 (Reliability Studies on Cu/SnAg Double-Bump Flip Chip Assemblies for Fine Pitch Applications)

  • 손호영;김일호;이순복;정기조;박병진;백경욱
    • 마이크로전자및패키징학회지
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    • 제15권2호
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    • pp.37-45
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    • 2008
  • 본 논문에서는 유기 기판 위에 $100{\mu}m$ 피치를 갖는 플립칩 구조인 Cu(60 um)/SnAg(20 um) 더블 범프 플립칩 어셈블리를 구현하여 이의 리플로우, 고온 유지 신뢰성, 열주기 신뢰성, Electromigration 신뢰성을 평가하였다. 먼저, 리플로우의 경우 횟수와 온도에 상관없이 범프 접속 저항의 변화는 거의 나타나지 않음을 알 수 있었다. 125도 고온 유지 시험에서는 2000시간까지 접속 저항 변화가 관찰되지 않았던 반면, 150도에서는 Kirkendall void의 형성으로 인한 접속 저항의 증가가 관찰되었다 또한 Electromigration 시험에서는 600시간까지 불량이 발생하지 않았는데 이는 Al금속 배선에서 유발되는 높은 전류 밀도가 Cu 칼럼의 높은 두께로 인해 솔더 영역에서는 낮아지기 때문으로 해석되었다. 열주기 시험의 경우, 400 cycle 이후부터 접속 저항의 증가가 발견되었으며, 이는 열주기 시험 동안 실리콘 칩과 Cu 칼럼 사이에 작용하는 압축 변형에 의해 그 사이에 있는 Al 및 Ti 층이 바깥쪽으로 밀려나감으로 인해 발생하는 것으로 확인되었다.

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공기 중에 노출된 MOCVD TiN 기판이 MOCVD Cu 증착에 미치는 효과 (Effect of air-contaminated TiN on the deposition characteristics of Cu film by MOCVD)

  • 최정환;변인재;양희정;이원희;이재갑
    • 한국재료학회지
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    • 제10권7호
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    • pp.482-488
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    • 2000
  • (hfac) Cu(1,5-COD)(1,1,1,5,5,5-hexafluro-2,4-pentadionato Cu(I) 1,5-cyclooctadine) 증착원을 이용하여 MOCVD(metal organic chemical vapor deposition)로 Cu 박막을 형성시키고, MOCVD에 의한 TiN 기판 변화가 Cu 증착에 미치는 영향을 조사하였다. 공기 중에 노출시킨 기판은 MOCVD 에 의한 Cu 핵생성 및 초기성장에 영향을 미쳐 입자크기가 작고, 입자간의 연결성이 떨어졌으며, in-situ MOCVD Cu의 경우는 입자크기가 크고, 입자간의 연결성이 우수하여 1900$\AA$ 이상의 두께에서는 $2.0{\mu}{\Omega}-cm$ 정도의 낮은 비저항을 유지하였다. 또한 접착력에서는 in-situ MOCVD TiN 의 경우가 보다 우수하였다. 이와 같은 결과를 토대로 MOCVD Cu 성장단계를 제시하였다.

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Xanthophyllomyces dendrorhous 변이군주에 의한 Carotenoids 생산 발효의 특성 연구 (Fermentation Kinetics for Production of Carotenoids by ${\beta}$-ionone Resistant Mutant of Xanthophyllomyces dendrorhous)

  • 박기문;김영준;송민우;강석진;이재흥
    • KSBB Journal
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    • 제21권4호
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    • pp.286-291
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    • 2006
  • 본 연구에서는 적효모 X. dendrorhous KCTC 7704로부터 여러 ${\beta}$-ionone 내성 변이균주를 선별하였다. 야생균 KCTC 7704는 ${\beta}$-ionone 0.021 mM 농도에서 생육이 현저히 저하되었지만, NTG처리 후 ${\beta}$-ionone 0.1 mM 농도에서 선별된 변이균주는 ${\beta}$-ionone 0.15 mM에서도 70% 이상의 상대 생육율을 나타내는 매우 강한 ${\beta}$-ionone 내성을 갖고 있었다. 여러 ${\beta}$-ionone 농도에서 선별한 변이균주들을 $20^{\circ}C$에서 4일간 회분식 발효로 배양하여 그 특성을 조사하였다. 선별된 가장 우수한 변이균주는 야생균주보다 카로티노이드 생성능이 2.3배 향상(즉 $1.2{\mu}g$ of total carotenoids per mg of dry cells)되었으며 유기산과 같은 대사산물은 거의 생성하지 않았다. 여러 탄소원 들에 대한 비교 발효특성 연구 결과 과당이나 자당을 사용했을 때봐 비교하여 포도당 배지에서 최종 균체농도 및 총 카로티노이드 생성량이 많았다. 포도당이 제한되는 연속발효(dilution rate $0.04h^{-1}$) 실험을 통하여 pH의 영향을 조사한 결과 균체농도 및 총 카로티노이드 생성은 pH 4.0 조건하에서 최적인 것을 알 수 있었다.