• 제목/요약/키워드: AZO oxide film

검색결과 96건 처리시간 0.024초

Properties of ZnO:Al thin film on variation of substrate temperature for display application

  • Keum, M.J.;Kim, H.W.;Cho, B.J.;Son, I.H.;Choi, M.G.;Lee, W.J.;Jang, K.W.;Kim, K.H.
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2005년도 International Meeting on Information Displayvol.II
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    • pp.1474-1476
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    • 2005
  • ZnO:Al(AZO) has been investigated for the photovoltaic cell or TCO(Transparent Conductive Oxide) of the display, because it has good electrical and optical properties. In this study, the ZnO:Al(AZO) thin film prepared on variation of substrate temperature by FTS(Facing Targets Sputtering) system. In case of TCO, because resistivity and roughness values affect the lighting of the OLED, their factors are very important. Therefore, in this paper, the electrical and optical properties of the AZO thin film were investigated with the deposition conditions and its roughness was investigated on variation of the substrate temperature. In results, AZO thin film deposited with the transmittance over 80% and the resistivity was reduced from $1.36{\times}10^{-3}$ [O-cm] to $4{\times}10^{-4}$ [O-cm] with increasing the substrate temperature from R.T to $200[^{\circ}C]$. Especially, we could obtain the resistivity $4{\times}10^{-4}$ [O-cm] of AZO thin film prepared at working pressure 1[mTorr], input current 0.4[A] and substrate temperature $200[^{\circ}C]$.

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Si3N4/SnZnO/AZO/Ag/Ti/ITO 다층 박막의 적층 횟수에 따른 광학적 특성 (The Optical Properties of Si3N4/SnZnO/AZO/Ag/Ti/ITO Multi-layer Thin Films with Laminating Times)

  • 이상윤;장건익
    • 한국전기전자재료학회논문지
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    • 제28권1호
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    • pp.7-11
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    • 2015
  • In this study, $Si_3N_4$/SnZnO/AZO/Ag/Ti/ITO multi-layer film were prepared on glass substrate by DC/RF magnetron sputtering method. To prevent interfacial reaction between Ag and ITO layer, Ti buffer layer was inserted. Optical properties and sheet resistance were studied depending on laminating times of each multi-layered film especially in visible ray. The simulation program, EMP (essential macleod program), was adopted and compared with experimental data to expect the experimental result. It was found out that the transmittance of the first stacked $Si_3N_4$/SnZnO/AZO/Ag/Ti/ITO multi-layer film was more than 90%. However, with increasing stacking times, the optical properties of $Si_3N_4$/SnZnO/AZO/Ag/Ti/ITO multi-layer film get worse. Consequently, Ti layer is good for oxidation barrier, but too many uses of this layer may have an adverse effect to optical properties of TCO film.

Structural and Electrical Properties of a-axis ZnO:Al Thin Films Grown by RF Magnetron Sputtering

  • 봉성재;김선보;안시현;박형식;이준신
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
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    • pp.329.1-329.1
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    • 2014
  • In this paper, we report electrical, optical and structural properties of Al-doped zinc oxide (AZO) thin films deposited at different substrate temperatures and pressures. The films were prepared by radio frequency (RF) magnetron sputtering on glass substrates in argon (Ar) ambient. The X-ray diffraction analysis showed that the AZO films deposited at room temperature (RT) and 20 Pa were mostly oriented along a-axis with preferred orientation along (100) direction. There was an improvement in resistivity ($3.7{\times}10^{-3}{\Omega}-cm$) transmittance (95%) at constant substrate temperature (RT) and working pressure (20 Pa) using the Hall-effect measurement system and UV-vis spectroscopy, respectively. Our results have promising applications in low-cost transparent electronics, such as the thin-film solar cells and thin-film transistors due to favourable deposition conditions. Furthermore our film deposition method offers a procedure for preparing highly oriented (100) AZO films.

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AZO Anode 전극을 적용한 OLED 소자의 제작과 전기적.광학적 특성 분석 (Analysis on the Electrical.optical Properties and fabrication of OLED with AZO Anode Electrode)

  • 진은미;신은철;김태완;박춘배
    • 한국전기전자재료학회논문지
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    • 제20권4호
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    • pp.357-362
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    • 2007
  • AZO(Aluminum-doped Zinc Oxide) films are attractive materials as transparent conductive electrode because they are inexpensive, nontoxic and abundant element compared with ITO(Indium Tin Oxide). AZO films have been deposited on glass (corning 1737) substrates by RF magnetron sputtering. The AZO film was post-annealed at $600^{\circ}C$ for 2 hr with $N_2$ atmosphere. The AZO films were used as an anode contact to fabricate OLEDs(Organic Light Emitting Diodes). OLEDs with $AZO/TPD/Alq_3/Al$ configuration were fabricated by thermal evaporation. We investigated that the electric, structural and optical properties of AZO thin films, which measured using the methods of XRD, SEM, Hall measurement and Spectrophotometer. The current density-voltage and luminescence-voltage properties of devices were studied and compared with ITO devices fabricated under the same conditions.

ITO와 AZO 동시 증착법으로 제조된 투명전도막의 특성 연구 (Investigation of Transparent Conductive Oxide Films Deposited by Co-sputtering of ITO and AZO)

  • 김동호;김혜리;이성훈;변응선;이건환
    • 한국표면공학회지
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    • 제42권3호
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    • pp.128-132
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    • 2009
  • Transparent conducting thin films of indium tin oxide(ITO) co-sputtered with aluminum-doped zinc oxide(AZO) were deposited on glass substrate by dual magnetron sputtering. It was found that the electrical properties and structural characteristics of the films are significantly changed according to the sputtering power of the AZO target. The IAZTO film prepared with D.C power of ITO at 100 W and R.F power of AZO at 50 W shows an electrical resistivity of $4.6{\times}10^{-4}{\Omega}{\cdot}cm$ and a sheet resistance of $30{\Omega}/{\square}$ (for 150 nm thick). Besides of the improvement of the electrical properties, compared to the ITO films deposited at the same process conditions, the IAZTO films have very smooth surface, which is due to the amorphous nature of the films. However, the electrical conductivity of the IAZTO films was found to be deteriorated along with the crystallization in case of the high temperature deposition (above $310^{\circ}C$). In this work, high quality amorphous transparent conductive oxide layers could be obtained by mixing AZO with ITO, indicating possible use of IAZTO films as the transparent electrodes in OLED and flexible display devices.

DC 마그네트론 스퍼터링에 의해 증착한 AZO 박막의 특성 (Characterization of AI-doped ZnO Films Deposited by DC Magnetron Sputtering)

  • 박이섭;이승호;송풍근
    • 한국표면공학회지
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    • 제40권3호
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    • pp.107-112
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    • 2007
  • Aluminum doped zinc oxide (AZO) films were deposited on non-alkali glass substrate by DC magnetron sputtering with 3 types of AZO targets (doped with 1.0 wt%, 2.0 wt%, 3.0 wt% $Al_2O_3$). Electrical, optical properties and microstructure of AZO films have been investigated by Hall effect measurements, UV/VIS/NIR spectrophotometer, and XRD, respectively. Crystallinity of AZO films increased with increasing substrate temperature ($T_s$) and doping ratio of Al. Resistivity and optical transmittance in visible light were $8.8{\times}10^{-4}{\Omega}cm$ and above 85%, respectively, for the AZO film deposited using AZO target (doped with 3.0 wt% $Al_2O_3$) at $T_s$ of $300^{\circ}C$. On the other hand, transmittance of AZO films in near-infrared region decreased with increasing $T_s$ and doping ratio of Al, which could be attributed to the increase of carrier density.

평판디스플레이 응용을 위한 AZO 투명전도막의 전기적, 구조적 및 광학적 특성 (Electrical, Structural, Optical Properties of the AZO Transparent Conducting Oxide Layer for Application to Flat Panel Display)

  • 노임준;김성현;박동화;신백균
    • 전기학회논문지
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    • 제58권10호
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    • pp.1976-1981
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    • 2009
  • Transparent conducting aluminum-doped zinc oxide (AZO) thin films were deposited on Coming glass substrate using an Gun-type rf magnetron sputtering deposition technology. The AZO thin films were fabricated with an AZO ceramic target (Zn: 98wt.%, $Al_2O_3$: 2wt.%). The AZO thin films were deposited with various growth conditions such as the substrate temperature, oxygen pressure. X -ray diffraction (XRD), UV/visible spectroscope, atomic force microscope (AFM), and Hall effect measurement system were done in order to investigate the properties of the AZO thin films Among the AZO thin films prepared in this study, the one formed at conditions of the substrate temperature $100^{\circ}C$, Ar 50 sccm, $O_2$ 5 sccm and working pressure 5 motor showed the best properties of an electrical resistivity of $1.763{\times}10^{-4}\;[{\Omega}{\cdot}cm]$, a carrier concentration of $1.801{\times}10^{21}\;[cm^{-3}]$, and a carrier mobility of $19.66\;[cm^2/V{\cdot}S]$, which indicates that it could be used as a transparent electrode for thin film transistor and flat panel display applications.

버퍼 층을 이용한 RF 마그네트론 스퍼터 방법에 의한 Al:ZnO 박막의 성장 (Characterization of Al-Doped ZnO Thin Film Grown on Buffer Layer with RF Magnetron Sputtering Method)

  • 노영수;박동희;김태환;최지원;최원국
    • 한국진공학회지
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    • 제18권3호
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    • pp.213-220
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    • 2009
  • Al이 도핑된 투명 전도성 Al:ZnO (AZO) 박막에 대한 RF magnetron sputtering 증착 법을 이용한 저온 최적공정조건을 연구하였다. 투명전극 재료로써의 AZO 박막의 전기적, 결정학적 물성을 최대한 향상시키기 위해서, in-situ상태에서 유리기판상에 최적화된 증착 조건의 AZO 버퍼 층을 삽입하는 이중박막 구조를 제작하였다. RF 인가 전력 $50{\sim}60\;W$에서 증착된 버퍼층 위에 120 W의 RF 전력에서 성장한 AZO 박막의 경우, 비저항 $3.9{\times}10^{-4}{\Omega}cm$, 전하 캐리어농도 $1.22{\times}10^{21}/cm^3$, 홀 이동도 $9.9\;cm^2/Vs$의 전기적 특성을 보였다. 이러한 결과는 버퍼 층이 없는 기존의 단일 구조와 비슷하나, 전기적 비저항 특성을 약 30% 정도 향상시킬 수 있었으며, 전기적 특성의 향상 원인을 $Ar^+$ 이온의 입사 에너지의 변화에 따른 버퍼 층의 압축응력과 결정화 정도와의 의존성으로 설명하였다.

동시 스퍼터링으로 제조한 AZO-ITO 혼합박막의 증착 중 수소 혼입 영향 분석 (Effect of H2 Addition on the Properties of Transparent Conducting Oxide Films Deposited by Co-sputtering of ITO and AZO)

  • 김혜리;김동호;이성훈;이건환
    • 한국표면공학회지
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    • 제42권6호
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    • pp.267-271
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    • 2009
  • Multicomponent transparent conducting oxide films were deposited on glass substrates at 150 by dual magnetron sputtering of AZO and ITO targets. In the case of mixing a limited amount of ITO (10W), resistivity of TCO films was significantly increased compared to the AZO film; from $3.5{\times}10^{-3}$ to $9.7{\times}10^{-3}{\Omega}{\cdot}cm$. Deterioration of the electrical conductivity is attributed to the decreases in carrier concentration and Hall mobility. Improvement of the conductivity could be obtained for the films prepared with ITO powers larger than 40 W. The lowest resistivity ($\rho$) of $7.3{\times}10^{-4}{\Omega}{\cdot}cm$ was achieved when ITO power was 100 W. Effects of $H_2$ incorporation on the electrical and optical properties of AZO-ITO films were investigated in this work. Addition of small amount of hydrogen resulted in the increase of carrier concentration and the improvement of electrical conductivity. It is apparent that the roughness of AZO-ITO films decreases dramatically after the transition of microstructure from polycrystalline to amorphous phase, which gives practical advantages such as an excellent uniformity of surface and a high etching rate. AZO-ITO films grown at sputtering ambient with hydrogen gas are expected to be applicable to optoelectronic devices such as organic light emitting diodes and flexible displays due to their sufficient electrical and structural properties.

LED 효율 향상을 위한 Texture구조 AZO 박막의 제조와 광학적 특성분석 (Analysis on the Optical Properties and Fabrication of Textured AZO Thin Films for Increasing the Efficiency of LED)

  • 김경민;진은미;박춘배
    • 한국전기전자재료학회논문지
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    • 제19권10호
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    • pp.901-906
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    • 2006
  • The transparent conductive oxide(TCO) has been used in necessity as front electrode for increasing efficiency of LED. In our paper, aluminium-doped zinc oxide films(AZO), which has transparent conducting were prepared with RF magnetron sputtering system on glass substrate(corning 1737) and annealed at $400^{\circ}C$ for 2 hr in vacuum ambient and $600^{\circ}C$ for 2hr with $O_2$ ambient respectively. The smooth AZO films were etched in diluted HCL(0.5 %) to examine the surface properties, which in ambient post-annealing process. We confirmed that the electric, structural and optical properties of textured AZO thin films, which implemented using the methods of XRD, FWHM, AFM and Hall measurement. The properties of textured AZO thin films especially depended on the ambient post-annealing process. We presumed that the change of transmittances as R G B LED and the ambient post-annealing process will be increasing the efficiency of LED.