• Title/Summary/Keyword: ohmic

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Demonstration of Nonpolar a-plane Light Emitting Diodes on r-plane Sapphire Substrate by MOCVD

  • Son, Ji-Su;Baik, Kwang-Hyeon;Song, Hoo-Young;Kim, Ji-Hoon;Kim, Tae-Geun;Hwang, Sung-Min
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.147-147
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    • 2011
  • High crystalline nonpolar a-plane (11-20) nitride light emitting diodes (LEDs) have been fabricated on r-plane (1-102) sapphire substrates by metalorganic chemical-vapor deposition (MOCVD). The multi-quantum wells (MQWs) active region is consists of 4 periods the nonpolar a-plane InGaN/GaN(a-InGaN/GaN) on a high quality a-plane GaN (a-GaN) template grown by using the multibuffer layer technique. The full widths at half maximum (FWHMs) of x-ray rocking curve (XRC) obtained from phiscan of the specimen that was grown up to nonpolar a-plane GaN LED layers with double crystal x-ray diffraction. The FWHM values were decreased down to 477 arc sec for $0^{\circ}$ and 505 arc sec for $-90^{\circ}$, respectively. After fabricating a conventional lateral LED chip which size was $300{\times}600{\mu}m^2$, we measured the optical output power by on-wafer measurements. N-electrode was made with Cr/Au contact, and ITO on p-GaN was formed with Ohmic contact using Ni/Au followed by inductively coupled plasma etching for mesa isolation. The optical output power of 1.08 mW was obtained at drive current of 20 mA with the peak emission wavelength of 502 nm.

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소다라임 유리기판상 CIGSe2 박막태양전지용 Mo 박막증착 및 MoSe2/Mo 박막특성 연구 (II)

  • Choe, Seung-Hun;Kim, Jin-Ha;Lee, Jong-Geun;Park, Jung-Jin;Jeong, Myeong-Hyo;Son, Yeong-Ho
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.02a
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    • pp.291-291
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    • 2012
  • 태양광 발전산업에서 현재 주류인 결정 실리콘 태양전지의 변환효율은 꾸준히 향상되고 있으나, 태양전지의 가격이 매년 서서히 하강되고 있는 실정에서 결정질 실리콘 가격의 상승 등으로 부가가치 창출에 어려움이 있으며, 생산 원가를 낮출 수 있는 태양전지 제조기술로는 2세대 태양전지로 불리는 박막형이 현재의 대안이며, 특히 에너지 변환 효율과 생산 원가에서 장점이 있는 것이 CIGS 박막 태양전지로 판단된다. 화합물반도체 베이스인 CIGS 박막태양전지는 연구실에서는 세계적으로 20.3% 높은 효율을 보고하고 있으며, 모듈급에서도 13% 효율로 생산이 시작되고 있다. 국내에서도 연구실 규모뿐만 아니라 대면적(모듈급) CIGS 박막 태양전지 증착용 장비, 제조공정 등의 기술개발이 진행되고 있다. CIGSe2를 광흡수층으로 하는 CIGSe2 박막 태양전지의 구조는 여러 층의 단위박막(하부전극, 광흡수층, 버퍼층, 상부투명전극)을 순차적으로 형성시켜 만든다. 이중에 하부전극은 Mo 재료을 스퍼터링 방법으로 증착하여 주로 사용한다. 하부전극은 0.24 Ohm/cm2 정도의 전기적 특성이 요구되며, 주상조직으로 성장하여야 하며, 고온 안정성 확보를 위하여 기판과의 밀착성이 좋아야하고 또한 레이저 패턴시 기판에서 잘 떨어져야 하는 특성을 동시에 가져야 한다. 그리고 CIGSe2의 광흡수층 제조시 셀렌화 공정에서 100 nm 이하의 MoSe2 두께를 갖도록 해야하며, 이는 CIGSe2 박막태양전지의 Rs 값을 줄여 Ohmic 접촉을 향상시키는데 기여한다. 본 연구에서는 CIGSe2 박막태양전지에서 요구되는 하부 전극 Mo 박막의 제작과 CIGSe2 박막태양전지 전체공정에 적용후의 MoSe2/Mo 박막특성에 대해서 연구결과들을 논하고자 한다. (본 연구는 경북그린에너지프론티어기업발굴육성사업 연구지원금으로 이루어졌음).

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Effect of the Substrate Temperature on the Characteristics of CIGS Thin Films by RF Magnetron Sputtering Using a $Cu(In_{1-x}Ga_x)Se_2$ Single Target

  • Jung, Sung-Hee;Kong, Seon-Mi;Fan, Rong;Chung, Chee-Won
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.02a
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    • pp.382-382
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    • 2012
  • CIGS thin films have received great attention as a promising material for solar cells due to their high absorption coefficient, appropriate bandgap, long-term stability, and low cost production. CIGS thin films are deposited by various methods such as co-evaporation, sputtering, spray pyrolysis and electro-deposition. The deposition technique is one of the most important processes in preparing CIGS thin film solar cells. Among these methods, co-evaporation is one of the best technique for obtaining high quality and stoichiometric CIGS films. However, co-evaporation method is known to be unsuitable for commercialization. The sputtering is known to be very effective and feasible process for mass production. In this study, CIGS thin films have prepared by rf magnetron sputtering using a $Cu(In_{1-x}Ga_x)Se_2$ single quaternary target without post deposition selenization. This process has been examined by the effects of deposition parameters on the structural and compositional properties of the films. In addition, we will explore the influences of substrate temperature and additional annealing treatment after deposition on the characteristics of CIGS thin films. The thickness of CIGS films will be measured by Tencor-P1 profiler. The crystalline properties and surface morphology of the films will be analyzed using X-ray diffraction and scanning electron microscopy, respectively. The optical properties of the films will be determined by UV-Visible spectroscopy. Electrical properties of the films will be measured using van der Pauw geometry and Hall effect measurement at room temperature using indium ohmic contacts.

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수직형 LED의 광 추출효율 향상을 위한 표면 roughening에 대한 연구

  • Kim, Tae-Hyeong;Bae, Jeong-Un;Yeom, Geun-Yeong
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.323-324
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    • 2011
  • 현재 많은 blue LED소자의 제작 공정과 소자 표면에 texturing하는 과정이 보고되어 있다. 그 중n층이 위로 올라오는 수직형 LED 구조로 인해 표면 texturing 기술은 빛의 발광 효율을 증가 시킬 수 있는 중요한 기술 중 하나가 되었다. 1 이 연구에서, 우리는 InGaN을 바탕으로 한 LED 소자의 표면 roughening을 건식과 습식 공정을 모두 거치는 과정을 통하여 소자의 발광 효율을 높이는 시도를 하였다. 최근 전도성 물질 기판 위에 증착 되어 있는 수직형 LED 소자 2,3,4는 과거의 사파이어 기판 위에 증착 되어 있는 형태의 LED 소자에 비해 우수한 소자 특성을 보인다. 이는 과거 사파이어 기판을 사용함으로써 낮은 열적 특성과 더불어 전기 정도성에 몇 가지 제약을 초래하게 되었기 때문이다. 반면, 전도성 기판은 LED 구조의 back side ohmic contact을 가능하게 하였고, 더 나은 확산 특성을 보여 주었고 작동 전압 또한 감소 하였다. N층이 위에 있는 수직형 LED 소자는 KrF pulsed excimer laser로 인해 실현 되었다. 이 laser 빛이 투명한 사파이어 기판을 통해 얇은 GaN층에 입사되면, 기판과 GaN가 분리된다. 이 레이저 기술은 laser lift-off(LLO)로 성장된 기판으로부터 LED 구조를 분리하는데 성공하게 하였다. 우리는 건식 식각 공정을 이용하여 n 층이 위에 올라와 있는 구조인 수직형 LED 소자에 roughening을 주고 다시 이 표면에 습식 식각 공정을 적용하여 거친 부분의 거칠기를 또 한번 증가시켰다. 그리고 이 거칠어진 표면은 이 공정이 진행 되기 전의 소자에 비해 빛의 발광 효율이 증가 되었다. 이 두 공정을 포함한 식각 공정은 두 가지 장점이 생겼는데, 한가지는 GaN에서 외부로 방출할 수 있는 표면 지역이 증가되었고, 다른 한가지는 가파른 거칠기 특성으로 인해 critical angle을 증가시킨 것이다.

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InAs 양자점 크기에 따른 태양전지의 광학적 특성

  • Han, Im-Sik;Lee, Sang-Jo;Son, Chang-Won;Ha, Jae-Du;Kim, Jong-Su;Kim, Yeong-Ho;Kim, Seong-Jun;Lee, Sang-Jun;No, Sam-Gyu;Park, Dong-U;Kim, Jin-Su;Im, Jae-Yeong;Byeon, Ji-Su
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.164-164
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    • 2011
  • 본 연구에서는 InAs 양자점 태양전지의 활성영역에 크기가 다른 양자점을 삽입하여 그 광학적 특성변화를 photoreflectance (PR)와 photoluminescence (PL)를 이용하여 연구하였다. 본 연구에 사용된 InAs 양자점 태양전지 구조는 n+-GaAs (100) 기판 위에 n+-GaAs buffer를 300 nm 성장 후 활성영역에 InAs 양자점과 40 nm 의 n-GaAs spacer를 이용하여 8층의 양자점을 삽입하였다. 그 위에 n-GaAs $1.14{\mu}m$와 p+-GaAs $0.6{\mu}m$, p+-AlGaAs window를 50 nm 성장하고 ohmic contact을 위하여 p+-GaAs 10 nm 성장하였다. 활성영역에 사용된 InAs 양자점의 크기는 InAs 조사량을 1.7 ML~3.0 ML까지 변화시키며 조절하였다. 양자점 태양전지의 활성영역에 삽입한 양자점의 크기에 따른 photoreflectance 측정에서 InAs 조사량이 0~2 ML 사이에서는 Franz-Keldysh oscillation (FKO)의 주기가 짧아지고 2.5 ML 이상에서는 일정한 값 가짐을 보였다. 이는 양자점의 크기가 커질수록 내부 응력에 의한 전기장의 변화에 의한 것으로 사료된다. 아울러 InAs 양자점 태양전지의 photoluminescence 측정 결과 상온에서 1.35 eV 근처에 발광이 관측되었으며 InAs 조사량이 증가할수록 발광중심 낮은 에너지쪽으로 이동함을 보였으며 태양전지 효율은 2.0 ML 인 경우 최고치를 나타내었다. InAs 조사량을 2.0 ML 이상 증가 시킨 경우는 효율이 점진적으로 감소하였다.

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Effect of High Temperature Annealing on the Characteristics of SiC Schottky Diodes (고온 열처리 공정이 탄화규소 쇼트키 다이오드 특성에 미치는 영향)

  • Cheong, Hui-Jong;Bahng, Wook;Kang, In-Ho;Kim, Sang-Cheol;Han, Hyun-Sook;Kim, Hyeong-Woo;Kim, Nam-Kyun;Lee, Yong-Jae
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.19 no.9
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    • pp.818-824
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    • 2006
  • The effects of high-temperature process required to fabricate the SiC devices on the surface morphology and the electrical characteristics were investigated for 4H-SiC Schottky diodes. The 4H-SiC diodes without a graphite cap layer as a protection layer showed catastrophic increase in an excess current at a forward bias and a leakage current at a reverse bias after high-temperature annealing process. Moreover it seemed to deviate from the conventional Schottky characteristics and to operate as an ohmic contact at the low bias regime. However, the 4H-SiC diodes with the graphite cap still exhibited their good electrical characteristics in spite of a slight increase in the leakage current. Therefore, we found that the graphite cap layer serves well as the protection layer of silicon carbide surface during high-temperature annealing. Based on a closer analysis on electric characteristics, a conductive surface transfiguration layer was suspected to form on the surface of diodes without the graphite cap layer during high-temperature annealing. After removing the surface transfiguration layer using ICP-RIE, Schottky diode without the graphite cap layer and having poor electrical characteristics showed a dramatic improvement in its characteristics including the ideality factor[${\eta}$] of 1.23, the schottky barrier height[${\Phi}$] of 1.39 eV, and the leakage current of $7.75\{times}10^{-8}\;A/cm^{2}$ at the reverse bias of -10 V.

Preparation of Thin Film Electrolyte for Solid Oxide Fuel Cell by Sol-Gel Method and Its Gas Permeability (졸-겔법을 이용한 고체산화물연료전지의 전해질 박막 제조 및 가스 투과도)

  • Son, Hui-Jeong;Lee, Hye-Jong;Lim, Tak-Hyoung;Song, Rak-Hyun;Peck, Dong-Hyun;Shin, Dong-Ryul;Hyun, Sang-Hoon;Kilner, John
    • Journal of the Korean Ceramic Society
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    • v.42 no.12 s.283
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    • pp.827-832
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    • 2005
  • In this study, thin electrolyte layer was prepared by 8YSZ ($8mol\%$ Yttria-Stabilized Zirconia) slurry dip and sol coating onto the porous anode support in order to reduce ohmic resistance. 8YSZ polymeric sol was prepared from inorganic salt of nitrate and XRF results of xerogel powder exhibited similar results $(99.2\pm1wt\%)$ compared with standard sample (TZ-8YS, Tosoh Co.). The dense and thin YSZ film with $1{\mu}m$ thickness was synthesized by coating of 0.7M YSZ sol followed by heat-treatment at $600^{\circ}C$ for 1 h. Thin film electrolyte sintered at $1400^{\circ}C$ showed no gas leakage at the differential pressure condition of 3 atm.

Synthesis of Carbon Nanotubes Supported PtCo Electrocatalysts and Its Characterization for the Cathode Electrode of PEMFC (탄소나노튜브에 담지된 PtCo 촉매 제조 및 PEMFC Cathode 전극 특성)

  • Jung, Dong-Won;Park, Soon;Kang, Jung-Tak;Kim, Jun-Bom
    • Korean Journal of Materials Research
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    • v.19 no.5
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    • pp.233-239
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    • 2009
  • The electrocatalytic behavior of the PtCo catalyst supported on the multi-walled carbon nanotubes (MWNTs) has been evaluated and compared with commercial Pt/C catalyst in a polymer electrolyte membrane fuel cell(PEMFC). A PtCo/MWNTs electrocatalyst with a Pt:Co atomic ratio of 79:21 was synthesized and applied to a cathode of PEMFC. The structure and morphology of the synthesized PtCo/MWNTs electrocatalysts were characterized by X-ray diffraction and transmission electron microscopy. As a result of the X-ray studies, the crystal structure of a PtCo particle was determined to be a face-centered cubic(FCC) that was the same as the platinum structure. The particle size of PtCo in PtCo/MWNTs and Pt in Pt/C were 2.0 nm and 2.7 nm, respectively, which were calculated by Scherrer's formula from X-ray diffraction data. As a result we concluded that the specific surface activity of PtCo/MWNTs is superior to Pt/C's activity because of its smaller particle size. From the electrochemical impedance measurement, the membrane electrode assembly(MEA) fabricated with PtCo/MWNTs showed smaller anodic and cathodic activation losses than the MEA with Pt/C, although ohmic loss was the same as Pt/C. Finally, from the evaluation of cyclic voltammetry(CV), the unit cell using PtCo/MWNTs as the cathode electrocatalyst showed slightly higher fuel cell performance than the cell with a commercial Pt/C electrocatalyst.

Indium Tin Oxide Based Reflector for Vertical UV LEDs (자외선 수직형 LED 제작을 위한 Indium Tin Oxide 기반 반사전극)

  • Jung, Ki-Chang;Lee, Inwoo;Jeong, Tak;Baek, Jong Hyeob;Ha, Jun-Seok
    • Korean Journal of Materials Research
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    • v.23 no.3
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    • pp.194-198
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    • 2013
  • In this paper, we studied a p-type reflector based on indium tin oxide (ITO) for vertical-type ultraviolet light-emitting diodes (UV LEDs). We investigated the reflectance properties with different deposition methods. An ITO layer with a thickness of 50 nm was deposited by two different methods, sputtering and e-beam evaporation. From the measurement of the optical reflection, we obtained 70% reflectance at a wavelength of 382 nm by means of sputtering, while only 30% reflectance resulted when using the e-beam evaporation method. Also, the light output power of a $1mm{\times}1mm$ vertical chip created with the sputtering method recorded a twofold increase over a chip created with e-beam evaporation method. From the measurement of the root mean square (RMS), we obtained a RMS value 1.3 nm for the ITO layer using the sputtering method, while this value was 5.6 nm for the ITO layer when using the e-beam evaporation method. These decreases in the reflectance and light output power when using the e-beam evaporation method are thought to stem from the rough surface morphology of the ITO layer, which leads to diffused reflection and the absorption of light. However, the turn-on voltage and operation voltage of the two samples showed identical results of 2.42 V and 3.5 V, respectively. Given these results, we conclude that the two ITO layers created by different deposition methods showed no differences in the electric properties of the ohmic contact and series resistance.

Fabrication and Cell Properties of Flattened Tube Segmented-in-Series Solid Oxide Fuel Cell-Stack Using Decalcomania Paper (전사지를 이용한 다전지식 평관형 고체산화물 연료전지 제작 및 셀 특성)

  • An, Yong-Tae;Ji, Mi-Jung;Park, Sun-Min;Shin, Sang-Ho;Hwang, Hae-Jin;Choi, Byung-Hyun
    • Korean Journal of Materials Research
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    • v.23 no.3
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    • pp.206-210
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    • 2013
  • In the segmented-in-series solid-oxide fuel cells (SIS-SOFCs), fabrication techniques which use decalcomania paper have many advantages, i.e., an increased active area of the electrode; better interfacial adhesion property between the anode, electrolyte and cathode; and improved layer thickness uniformity. In this work, a cell-stack was fabricated on porous ceramic flattened tube supports using decalcomania paper, which consists of an anode, electrolyte, and a cathode. The anode layer was $40{\mu}m$ thick, and was porous. The electrolyte layers exhibited a uniform thickness of about $20{\mu}m$ with a dense structure. Interfacial adhesion was improved due to the dense structure. The cathode layers was $30{\mu}m$ thick with porous structure, good adhesion to the electrolyte. The ohmic resistance levels at 800, 750 and $700^{\circ}C$ were measured, showing values of 1.49, 1.58 and $1.65{\Omega}{\cdot}cm^2$, respectively. The polarization resistances at 800, 750 and $700^{\circ}C$ were measured to be 1.63, 2.61 and $4.17cm^2$, respectively. These lower resistance values originated from the excellent interfacial adhesion between the anode, electrolyte and cathode. In a two-cell-stack SOFC, open-circuit voltages(OCVs) of 1.915, 1.942 and 1.957 V and maximum power densities(MPD) of 289.9, 276.1 and $220.4mW/cm^2$ were measured at 800, 750 and $700^{\circ}C$, respectively. The proposed fabrication technique using decalcomania paper was shown to be feasible for the easy fabrication of segmented-in-series flattened tube SOFCs.