• 제목/요약/키워드: Electrode size

검색결과 803건 처리시간 0.027초

White Electroluminescent Device by ZnS: Mn, Cu, Cl Phosphors

  • 김종수;박재홍;이성훈;김광철;권애경;박홍이
    • 반도체디스플레이기술학회지
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    • 제5권3호
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    • pp.1-4
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    • 2006
  • White-light-emitting ZnS:Mn, Cu, Cl phosphors with spherical shape and the size of $20\;{\mu}m$ are successfully synthesized. They have the double phases of cubic and hexagonal structures. They are applied to electroluminescent (EL) devices by silk screen method with the following structure: $electrode/BaTiO_3$ insulator layer ($50{\sim}60\;{\mu}m$)/ ZnS:Mn, Cu, Cl phosphor layer ($30{\sim}50\;{\mu}m$)/ITO glass. The EL devices are driven with the voltage of 100 V and the frequency of 400 Hz. The EL devices show the three emission peaks. The blue and green emission bands are originated from $CICu^{2+}$ transition and $ClCu^+$ transition, respectively. The yellow emission band results from $^4T^6A$ transition of $Mn^{2+}$ ion. As an increase of Cu concentrations, the blue and green emission intensities decrease whereas the yellow emission intensity increases; the quality becomes warm white. It is due to the energy transfer from the blue and green bands to the yellow band.

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나노결정질 Ni-W 합금전착의 내부응력에 미치는 공정조건 변수의 영향 (Influences of Electrodeposition Variables on the Internal Stess of Nanocrystalline Ni-W Films)

  • 김경태;이정자;황운석
    • Corrosion Science and Technology
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    • 제11권6호
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    • pp.275-279
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    • 2012
  • Ni-W alloy deposits have lately attracted the interest as an alternative surface treatment method for hard chromium electrodeposits because of higher wear resistance, hardness at high temperature, and corrosion resistance. This study deals with influences of process variables, such as electodeposition current density, plating temperature and pH, on the internal stress of Ni-W nanocrystalline deposits. The internal stress was increased with increasing the applied current density. With increasing applied current density, the grain size of the deposit decreases and concentration of hydrogen in the deposit increases. The subsequent release of the hydrogen results in shrinkage of the deposit and the introduction of tensile stress in the deposit. Consequently, for layers deposited at high current density, cracking occurs readily owing to high tensile stress value. By increasing the temperature of the electrodeposition from $60^{\circ}C$ to $80^{\circ}C$, the internal stress was decreased. It seems that an increase in the number of active ions overcoming the activation energy at elevated temperature caused a decline in the concentration polarization and surface diffusion. It decreased the level of hydrogen absorption due to the lessened hydrogen evolution reaction. Therefore, the lower level of hydrogen absorption degenerated the hydride on the surface of the electrode, resulting in the reduction of the internal stress of the deposits. By increasing the pH of the electrodeposition from 5.6 to 6.8, the internal stress in the deposits were slightly decreased. It is considered that the decrease in internal stess of deposits was due to supply of W complex compound in cathode surface, and hydrogen ion resulted from decrease of activity.

자연산화 $Al_2O_3$장벽층을 갖는 스핀의존 터널링 접합에서 자기저항특성의 접합면적 의존성 (Junction Area Dependence of Tunneling Magnetoresistance in Spin-dependent Tunneling Junction with Natural $Al_2O_3$Barrier)

  • 이긍원;이상석
    • 한국자기학회지
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    • 제11권5호
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    • pp.202-210
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    • 2001
  • 자연산화 $Al_2$O$_3$층이 형성된 하부형태 터널링 자기저항 다층박막이 기본진공도 $10^{-9}$ Torr을 유지하는 UHV 챔버내에서 이온빔 스퍼터링과 dc 마그네트론 스퍼터링 법으로 증착되었다. 제작된 스핀의존터널링 (SDT) 접합소자의 최대 터널링자기저항(TMR)와 최소 접합저항과 면적곱(R$_{j}$ A) 각각 16~17%와 50-60$\Omega$$\mu\textrm{m}$$^2$이었다. 자기장하에서 열처리한 SDT접합에 대한 TMR향상과 (R$_{j}$ A) 감소의 변화는 미미하였다. 접합면적이 81$\mu\textrm{m}$$^2$에서 47$\mu\textrm{m}$$^2$까지 접합크기가 작이짐에 따라 TMR이 증가하고 (R$_{j}$ A)이 감소하는 의존성이 관찰되었다. 이러한 현상을 하부층 단자의 판흐름 저항값 의존효과와 스핀채널효과로 설명하였다.

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Al2O3 산화 피막의 내식성에 미치는 양극산화 전류밀도의 영향 (Effect of Anodizing Current Density on Anti-Corrosion Characteristics for Al2O3 Oxide Film)

  • 이승준;장석기;김성종
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 2016년도 추계학술대회 논문집
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    • pp.153-153
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    • 2016
  • Aluminum alloys have poor corrosion resistance compared to the pure aluminum due to the additive elements. Thus, anodizing technology artificially generating thick oxide films are widely applied nowadays in order to improve corrosion resistance. Anodizing is one of the surface modification techniques, which is commercially applicable to a large surface at a low price. However, most studies up to now have focused on its commercialization with hardly any research on the assessment and improvement of the physical characteristics of the anodized films. Therefore, this study aims to select the optimum temperature of sulfuric electrolyte to perform excellent corrosion resistance in the harsh marine environment through electrochemical experiment in the sea water upon generating porous films by variating the temperatures of sulfuric electrolyte. To fabricate uniform porous film of 5083 aluminum alloy, we conducted electro-polishing under the 25 V at $5^{\circ}C$ condition for three minutes using mixed solution of ethanol (95 %) and perchloric (70 %) acid with volume ratio of 4:1. Afterward, the first step surface modification was performed using sulfuric acid as an electrolyte where the electrolyte concentration was maintained at 10 vol.% by using a jacketed beaker. For anode, 5083 aluminum alloy with thickness of 5 mm and size of $2cm{\times}2cm$ was used, while platinum electrode was used for cathode. The distance between the two was maintained at 3 cm. Afterward, the irregular oxide film that was created in the first step surface modification was removed. For the second step surface modification process (identical to the step 1), etching was performed using mixture of chromic acid (1.8 wt.%) and phosphoric acid (6 wt.%) at $60^{\circ}C$ temperature for 30 minutes. Anodic polarization test was performed at scan rate of 2 mV/s up to +3.0 V vs open circuit potential in natural seawater. Surface morphology was compared using 3D analysis microscope to observe the damage behavior. As a result, the case of surface modification presented a significantly lower corrosion current density than that without modification, indicating excellent corrosion resistance.

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Enhanced Performance of La0.6Sr0.4Co0.2Fe0.8O3-\delta (LSCF) Cathodes with Graded Microstructure Fabricated by Tape Casting

  • Nie, Lifang;Liu, Ze;Liu, Mingfei;Yang, Lei;Zhang, Yujun;Liu, Meilin
    • Journal of Electrochemical Science and Technology
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    • 제1권1호
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    • pp.50-56
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    • 2010
  • $La_{0.6}Sr_{0.4}Co_{0.2}Fe_{0.8}O_{3-\delta}$ (LSCF) powders with different particle sizes, synthesized through a citrate complexation method and a gel-casting technique, are used to fabricate porous LSCF cathodes with graded microstructures via tape casting. To create porous electrodes with desired porosity and pore structures, graphite and starch are used as pore former for different layers of the graded cathode. Examination of the microstructures of the as-prepared LSCF cathode using an SEM revealed that both grain size and porosity changed gradually from the catalytically active layer (near the electrodeelectrolyte interface) to the current collection layer (near the electrode-interconnect interface). Impedance analysis showed that a 3-layer LSCF cathode with graded microstructures exhibited much-improved performance compared to that of a single-layer LSCF cathode, corresponding to interfacial resistance of 0.053, 0.11, and 0.27 $\Omega{\cdot}cm^2$ at 800, 750, and $700^{\circ}C$ respectively.

Fault Detection 기능을 갖는 이오나이저 모듈용 게이트 구동 칩 설계 (Design of Gate Driver Chip for Ionizer Modules with Fault Detection Function)

  • 김홍주;하판봉;김영희
    • 전기전자학회논문지
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    • 제24권1호
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    • pp.132-139
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    • 2020
  • 공기청정기에 사용되는 이오나이저 모듈은 권선형 transformer를 사용하여 방전전극인 HV+/HV-에 3.5KV/-4KV의 고전압을 공급하여 carbon fiber brush의 전계 방사에 의해 양이온과 음이온을 발생시킨다. 기존의 MCU를 이용한 이오나이저 모듈 회로는 PCB 사이즈가 크고 가격이 비싼 단점이 있고, 기존의 ring oscillator를 이용한 게이트 구동 칩은 oscillation 주기가 PVT(Process-Voltage-Temperature) 변동에 민감하고 HV+와 GND, HV-와 GND의 단락에 의한 fault detection 기능이 없으므로 화재나 감전의 위험이 있다. 그래서 본 논문에서는 7bit binary UP counter를 이용하여 PVT 변동이 있더라도 oscillation 주기를 조절하여 HV+ 전압이 목표 전압에 도달하게 한다. 그리고 HV+와 GND 사이의 단락을 검출하기 위한 HV+ short fault detection 회로, HV-와 GND 사이의 단락을 검출하기 위한 HV- short fault detection 회로와 HV+가 과전압 이상으로 올라가는 것을 검출하기 위한 OVP(Over-Voltage Protection) 회로를 새롭게 제안하였다.

DMMP 검출용 금속산화물을 첨가한 $SnO_2$ 가스센서 제조 (Fabrication of $SnO_2$ Gas Sensor added by Metal Oxide for DMMP)

  • 최낙진;반태현;곽준혁;백원우;김재창;허증수;이덕동
    • 한국군사과학기술학회지
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    • 제6권3호
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    • pp.54-61
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    • 2003
  • $SnO_2$ gas sensor for the detection DMMP, simulant of nerve gas was fabricated and its characteristics were examined. Sensing materials were $SnO_2$ added by TEX>$\alpha$-$Al_{2}O_{3}$ with 0∼20wt.% and $In_{2}O_{3}$ with 0∼3wt.% and were physically mixed each material. They were deposited by screen printing method on alumina substrate. The sensor was consisted of sensing electrode with interdigit(IDT) type in front and a heater in back side. Its dimension was 7$\times$10$\times$0.6$\textrm{mm}^2$. Crystallite size 8t phase identification, specific surface area and morphology of fabricated $SnO_2$ powders were analyzed by X-ray diffraction(XRD), surface area analyzer(BET) and by a scanning electron microscope(SEM), respectively. Sensor was measured as flow type and sensor resistance change was monitored as real time using LabVIEW program. The best sensitivities were 75% at adding 4wt.% TEX>$\alpha$-$Al_{2}O_{3}$, operating temperature $300^{\circ}C$ and 87% at adding 2wt.% $In_{2}O_{3}$, operating temperature $350^{\circ}C$ to DMMP 0.5ppm. Response and recovery times were about 1 and 3 min., respectively. Repetition measurement was very good with $\pm$3% in full scale. As a result, operating temperature was lower TEX>$\alpha$-$Al_{2}O_{3}$ than $In_{2}O_{3}$, but sensitivity was higher $In_{2}O_{3}$ than $\alpha$-$Al_{2}O_{3}$.

슬러그류 액상속도 측정용 전류형식 전자기유량계 개발 (Development of a Current-Type Electromagnetic Flowmeter to Obtain the Liquid Mean Velocity in Two-Phase Slug Flow)

  • 강덕홍;안예찬;김종록;오병도;김무환
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 춘계학술대회
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    • pp.1951-1956
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    • 2004
  • The transient nature and complex flow geometries of two-phase gas-liquid flows cause fundamental difficulties when measuring flow velocity using an electromagnetic flowmeter. Recently, a current-sensing flowmeter was introduced to obtain measurements with high temporal resolution (Ahn et $al.^{(1)}$). In this study, current-sensing flowmeter theory was applied to measure the fast velocity transients in slug flows. To do this, the velocity fields of axisymmetric gas-liquid slug flow in a vertical pipe were obtained using Volume-of-Fluid (VOF) method and the virtual potential distributions for the electrodes of finite size were also computed using the finite volume method for the simulated slug flow. The output signal prediction for slug flow was carried out from the velocity and virtual potential (or weight function) fields. The flowmeter was numerically calibrated to obtain the cross-sectional liquid mean velocity at an electrode plane from the predicted output signal. Two calibration parameters are required for this procedure: a flow pattern coefficient and a localization parameter. The flow pattern coefficient was defined by the ratio of the liquid resistance between the electrodes for two-phase flow with respect to that for single-phase flow, and the localization parameter was introduced to avoid errors in the flowmeter readings caused by liquid acceleration or deceleration around the electrodes. These parameters were also calculated from the computed velocity and virtual potential fields. The results can be used to obtain the liquid mean velocity from the slug flow signal measured by a current-sensing flowmeter.

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고상반응법에 의해 제조된 $Li_{0.44}MnO_2$의 전기화학적 성질에 미치는 Ti 치환의 영향 (Effect of Ti substitution on electrochemical properties $Li_{0.44}MnO_2$ synthesized by solid state reaction)

  • 황광택
    • 한국결정성장학회지
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    • 제10권5호
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    • pp.362-366
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    • 2000
  • $Li_{0.44}MnO_2$양극재료는 리튬의 삽입과정에서 높은 가역성을 가지며 과충전이나 과방전 과정에서 쉽게 손상되지 않는다. $Mn_2O_3$가 불순물로 자주 나타나며 전기화학적으로 비활성이기 때문에 전극의 전기화학적 용량을 감소시킨다. 잉여의 NaOH 첨가는 $Mn_2O_3$를 X선 회절에 검출되지 않는 정도로 낮추었다. 용량 증가는 큰 단위세포를 가지는 양극재료에서 얻어질 수 있으므로, 망간의 일부를 이온반경이 큰 티타니움으로 치환하였으며, $Li_{0.44}T_{iy}Mn_{1-y}O_2$(여기서 y = 0.11, 0.22, 0.33, 0.44, 0.55) 조성의 분말들을 합성하여 특성을 평가하였다. ECPS 실험결과 $Li/P(EO)_8$LiTFSI/$LixTi_{0.22}Mn_{0.78}O_2$전지에서 150 mAh/g 최대가역용량 값이 얻어졌다. 티타니움이 치환된 망간산화물을 사용한 전지는 충방전당 0.12 %나 그 이하의 용량감소율을 나타내었다.

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Yttrium이 첨가된 BaTiO3에서 형성된 core/shell 구조에서 shell의 TCC 거동: 독립적 관찰 (TCC behavior of a shell phase in core/shell structure formed in Y-doped BaTiO3: an individual observation)

  • 전상채
    • 한국결정성장학회지
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    • 제30권3호
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    • pp.110-116
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    • 2020
  • MLCC(Multi-Layer Ceramic Capacitor)의 유전체 층에 사용되는 BaTiO3 입자는 안정한 TCC(Temperature Characteristics of Capacitance) 거동을 갖기 위해 core/shell 구조를 갖는다. 지금까지 shell의 특성은 core/shell 구조의 전체 특성에서 유추해 왔다. 이는 core/shell 구조가 겨우 수 ㎛의 작은 크기로 shell 특성만 구별해서 측정하기가 어렵기 때문이다. 본 실험에서는 micro-contact법을 이용하여 확산쌍 시편의 계면에 형성된 확대된 core/shell 구조에 Pt 전극을 증착하여 35~135℃ 에서 shell 영역의 독립적인 TCC 거동을 측정하였다. 그 결과, 65℃에서 최대 유전율 값을 갖는 완만한 피크의 확산 상전이(Diffusion Phase Transition) 거동인 core의 특성과 구별되는 거동을 관찰하였으며, 이는 core/shell 구조의 온도-유전거동을 묘사하는 모델링에서 실험 자료로 활용될 것으로 본다.