• 제목/요약/키워드: Passivation Film

검색결과 304건 처리시간 0.02초

High Quality Nano Structured Single Gas Barrier Layer by Neutral Beam Assisted Sputtering (NBAS) Process

  • Jang, Yun-Sung;Lee, You-Jong;Hong, Mun-Pyo
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제43회 하계 정기 학술대회 초록집
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    • pp.251-252
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    • 2012
  • Recently, the growing interest in organic microelectronic devices including OLEDs has led to an increasing amount of research into their many potential applications in the area of flexible electronic devices based on plastic substrates. However, these organic devices require a gas barrier coating to prevent the permeation of water and oxygen because organic materials are highly susceptible to water and oxygen. In particular, high efficiency OLEDs require an extremely low Water Vapor Transition Rate (WVTR) of $1{\times}10^{-6}g/m^2$/day. The Key factor in high quality inorganic gas barrier formation for achieving the very low WVTR required ($1{\times}10^{-6}g/m^2$/day) is the suppression of defect sites and gas diffusion pathways between grain boundaries. In this study, we developed an $Al_2O_3$ nano-crystal structure single gas barrier layer using a Neutral Beam Assisted Sputtering (NBAS) process. The NBAS system is based on the conventional RF magnetron sputtering and neutral beam source. The neutral beam source consists of an electron cyclotron Resonance (ECR) plasma source and metal reflector. The Ar+ ions in the ECR plasma are accelerated in the plasma sheath between the plasma and reflector, which are then neutralized by Auger neutralization. The neutral beam energies were possible to estimate indirectly through previous experiments and binary collision model. The accelerating potential is the sum of the plasma potential and reflector bias. In previous experiments, while adjusting the reflector bias, changes in the plasma density and the plasma potential were not observed. The neutral beam energy is controlled by the metal reflector bias. The NBAS process can continuously change crystalline structures from an amorphous phase to nano-crystal phase of various grain sizes within a single inorganic thin film. These NBAS process effects can lead to the formation of a nano-crystal structure barrier layer which effectively limits gas diffusion through the pathways between grain boundaries. Our results verify the nano-crystal structure of the NBAS processed $Al_2O_3$ single gas barrier layer through dielectric constant measurement, break down field measurement, and TEM analysis. Finally, the WVTR of $Al_2O_3$ nano-crystal structure single gas barrier layer was measured to be under $5{\times}10^{-6}g/m^2$/day therefore we can confirm that NBAS processed $Al_2O_3$ nano-crystal structure single gas barrier layer is suitable for OLED application.

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리간드 종류와 후처리 공정에 따른 황화납 콜로이드 양자점 박막의 전자 구조 및 원소 조성 분석 (Electronic Structure and Elemental Composition of the Lead Sulfide Colloidal Quantum Dots Depending on the Types of Ligand and Post-Treatment)

  • 김태건;최혜경;정소희;김정원
    • 대한화학회지
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    • 제60권6호
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    • pp.402-409
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    • 2016
  • 3-Mecaptopropionic acid (MPA) 리간드와 하이브리드 타입 리간드($MPA+CdCl_2$)로 각각 부동화(passivation) 된 2.8 nm 크기의 황화납 콜로이드 양자점 박막을 제작하고, 각각을 대기 중, 질소 분위기에서 열처리, 오존 처리 하였을 때 나타나는 두 양자점 박막의 전자 구조와 조성 원소의 변화를 광전자 분광법을 이용하여 연구하였다. 대기에서 열처리는 리간드 종류와 관계없이 황화납 양자점의 가전자대 시작점이 공통적으로 약한 p-도핑 효과가 있음을 직접적으로 확인할 수 있었다. 또한, 오존처리 후 두 황화납 양자점 표면에 공통적으로 $Pb(OH)_2$, $PbSO_x$, PbO를 형성하는 것을 확인하였다. 하지만, 오존에 의해 형성된 산화물 중 PbO 성분은 특별히 하이브리드 타입 리간드로 부동화 된 양자점에서 형성된 양이 MPA 리간드만으로 부동화 된 양자점과 비교했을 때 감소한 것을 확인할 수 있었다. 이것은 PbS(111) 격자면에 있는 과량의 Pb 표면이 $Cl_2$으로 부동화되면서, Pb 양이온과 오존의 반응을 차단함으로써 PbO의 형성을 어렵게 했기 때문으로 추정된다.

수종 임플랜트 금속의 내식성에 관한 전기화학적 연구 (AN ELECTROCHEMICAL STUDY ON THE CORROSION RESISTANCE OF THE VARIOUS IMPLANT METALS)

  • 전진영;김영수
    • 대한치과보철학회지
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    • 제31권3호
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    • pp.423-446
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    • 1993
  • Titanium and its alloys are finding increasing use in medical devices and dental implants. The strong selling point of titanium is its resistance to the highly corrosive body fluids in which an implant must survive. This corrosion resistance is due to a tenacious passive oxide or film which exists on the metal's surface and renders it passive. Potentiodynamic polarization measurement is one of the most commonly used electro-chemical methods that have been applied to measure corrosion rates. And the potentiodynamic polarization test supplies detailed information such as open circuit, rupture, and passivation potential. Furthermore, it indicates the passive range and sensitivity to pitting corrosion. This study was designed to compare the corrosion resistance of the commonly used dental implant materials such as CP Ti, Ti-6A1-4V, Co-Cr-Mo alloy, and 316L stainless steel. And the effects of galvanic couples between titanium and the dental alloys were assessed for their useful-ness-as. materials for superstructure. The working electrode is the specimen , the reference electrode is a saturated calomel electrode (SCE), and the counter electrode is made of carbon. In $N_2-saturated$ 0.9% NaCl solutions, the potential scanning was performed starting from -800mV (SCE) and the scan rate was 1 mV/sec. At least three different polarization measurements were carried out for each material on separate specimen. The galvanic corrosion measurements were conducted in the zero-shunt ammeter with an implant supraconstruction surface ratio of 1:1. The contact current density was recorded over a 24-hour period. The results were as follows : 1. In potential-time curve, all specimens became increasingly more noble after immersion in the test solution and reached between -70mV and 50mV (SCE) respectively after 12 hours. 2. The Ti and Ti alloy in the saline solution were most resistant to corrosion. They showed the typical passive behavior which was exhibited over the entire experimental range. Therefore no breakdown potentials were observed. 3. Comparing the rupture potentials, Ti and Ti alloy had the high(:st value (because their break-down potentials were not observed in this study potential range ) followed by Co-Cr-Mo alloy and stainless steel (316L). So , the corrosion resistance of titanium was cecellent, Co-Cr-Mo alloy slightly inferior and stainless steel (316L) much less. 4. The contact current density sinks faster than any other galvanic couple in the case of Ti/gold alloy. 5. Ag-Pd alloy coupled with Ti yielded high current density in the early stage. Furthermore, Ti became anodic. 6. Ti/Ni-Cr alloy showed a relatively high galvanic current and a tendency to increase.

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PEM 연료전지 경량화를 위한 마그네슘 분리판의 성능평가 (Performance assessment of Magnesium Bipolar Plates for Light Weight PEM Fuel Cell)

  • 박토순;이동우;김경환;권세진
    • 한국항공우주학회지
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    • 제40권12호
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    • pp.1063-1069
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    • 2012
  • 본 연구에서는 PEM 연료전지의 경량화를 위한 방안으로 밀도가 낮고 전기전도성이 높은 마그네슘 합금을 분리판에 적용하였다. 금속 분리판 표면의 부식 및 산화 방지막 형성을 위해서 스퍼터링을 이용하여 은(silver)을 증착하였다. 최적의 증착 조건 확립을 위한 내산성 평가에 있어서 미세균열이 발생하지 않는 3 ${\mu}m$를 최적 증착 두께로 선정하고, $180^{\circ}C$에서 코팅을 수행함으로써 증착 두께의 균일성을 향상시켰다. 단일전지 구성을 위한 분리판 형상결정을 위해서 체결압, 채널 깊이에 따른 성능을 비교평가 하였다. 제작된 분리판을 이용하여 단일전지를 구성하고, 코팅 유무 및 체결압과 채널 깊이별 전류-전압 성능을 비교평가 하였다. 코팅된 마그네슘 분리판은 최대 전력밀도 192 $mW/cm^2$로, 단위 중량당 전력 밀도가 기존 금속 분리판 대비 우수함을 확인하였다.