• 제목/요약/키워드: Aluminum doped zinc oxide (AZO)

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Influence of Surface Texturing on the Electrical and Optical Properties of Aluminum Doped Zinc Oxide Thin Films

  • Lee, Jaeh-Yeong;Shim, Joong-Pyo;Jung, Hak-Kee
    • Journal of information and communication convergence engineering
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    • 제9권4호
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    • pp.461-465
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    • 2011
  • An aluminum doped zinc oxide (AZO) film for front contacts of thin film solar cells, in this work, were deposited by r.f. magnetron sputtering, and then etched in diluted hydrochloric acid solution for different times. Effects of surface texturing on the electro-optical properties of AZO films were investigated. Also, to clarify the light trapping of textured AZO film, amorphous silicon thin film solar cells were fabricated on the textured AZO/glass substrate and the performance of solar cells were studied. After texturing, the spectral haze at the visible range of 400 ~750 nm increased substantially with the etching time, without a change in the resistivity. The conversion efficiency of amorphous Si solar cells with textured AZO film as a front electrode was improved by the increase of short-circuit current density ($J_{sc}$), compared to cell with flat AZO films.

Pulsed-DC 스퍼터링에서 Reverse Pulse Time에 따른 AZO 박막의 특성 변화에 관한 연구 (A Study on the Dependency of Pulsed-DC Sputtered Aluminum-doped Zinc Oxide Thin Films on the Reverse Pulse Time)

  • 류형석;조진건;권상직;조의식
    • 반도체디스플레이기술학회지
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    • 제17권4호
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    • pp.32-36
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    • 2018
  • For various oxygen($O_2$) to argon(Ar) gas ratio, aluminum-doped zinc oxide(AZO) films were deposited for 3 min at different duty ratio by changing reverse pulse times. As the duty ratio increased, the thickness of the AZO film decreased and the sheet resistance increased. It can be concluded that When sputtering AZO Thin film, oxygen interfered with sputtering. When the reverse time was increased, the thickness of AZO was proportional to the real sputtering time and decreased. From the optical transmittance and sheet resistance, it was possible to obtain a higher figure of merits of AZO at a lower reverse pulse time. Even at the short reversed pulse time, it can be concluded that the accumulated charges on the AZO target are completely cleared. At a lower reverse pulse time, pulsed-DC sputtering of AZO is expected to be used instead of DC sputtering in the deposition of transparent conductive oxide(TCO) films without any degradation in thickness and structural/electrical characteristics.

Effects of Annealing Temperature on Properties of Al-Doped ZnO Thin Films prepared by Sol-Gel Dip-Coating

  • Jun, Min-Chul;Koh, Jung-Hyuk
    • Journal of Electrical Engineering and Technology
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    • 제8권1호
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    • pp.163-167
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    • 2013
  • Aluminum doped zinc oxide (AZO) thin films have been prepared on the glass substrates (Corning 1737) by sol-gel dip-coating method employing zinc acetate and aluminum chloride hexahydrate for the transparent conducting oxide (TCO) applications. 1 at% Al was doped to the ZnO thin films. The effects of post-heating temperature on the crystallization, optical and electrical properties of the AZO films have been investigated. Experimental results showed that post-heating temperature affected the microstructure, electrical resistance, and optical transmittance of the AZO films. From the X-ray diffraction analysis, all films have hexagonal wurtzite crystal structure. Optical transmittance spectra of the AZO films exhibited transmittance higher than about 80% within the visible wavelength region and the optical direct band gap ($E_g$) of these films was increased with increasing post-heating temperature. A minimum resistivity of $2.5{\times}10^{-3}{\Omega}cm$ was observed at $650^{\circ}C$.

직류 반응성 sputtering법으로 제막된 ZnO:Al 박막의 물성에 미치는 증착조건 및 타겟의 영향 (Effect of sputtering parameters and targets on properties of ZnO:Al thin films prepared by reactive DC magnetron sputtering)

  • 유병석;오근호
    • 한국결정성장학회지
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    • 제8권4호
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    • pp.592-598
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    • 1998
  • ZnO($Al_2O_3\;2%$ 2% doped) 산화물 타겟과 금속 Zn(Al 2% doped) 타겟을 사용하여 반응성 직류 마그네트론 스퍼터링법으로 산소 가스 및 인가 전력을 조절하면서 AZO(Aluminum doped Zine Oxide) 막을 증착하였다. 비저항과 평균 투과율을 고려할 때 최적의 투명전도성을 보이는 조건은 산화물 타겟의 경우 산소가스의 비가 $0.5{\times}10^{-2}~1.0{\times}10^{-2}$범위이며, 금속 타겟의 경우 인가전력 0.6kW에서는 0.215~0.227, 1.0kW에서는 0.305~0.315이었다. 각 최적조건에서 제막된 AZO 막의 비저항은 $1.2~1.4{\times}10^{-3} {\Omega}{\cdot}cm$cm으로 타겟에 의한 차이는 없었다.

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AZO 투명 전극 기반 반투명 실리콘 박막 태양전지 (AZO Transparent Electrodes for Semi-Transparent Silicon Thin Film Solar Cells)

  • 남지윤;조성진
    • 한국전기전자재료학회논문지
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    • 제30권6호
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    • pp.401-405
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    • 2017
  • Because silicon thin film solar cells have a high absorption coefficient in visible light, they can absorb 90% of the solar spectrum in a $1-{\mu}m$-thick layer. Silicon thin film solar cells also have high transparency and are lightweight. Therefore, they can be used for building integrated photovoltaic (BIPV) systems. However, the contact electrode needs to be replaced for fabricating silicon thin film solar cells in BIPV systems, because most of the silicon thin film solar cells use metal electrodes that have a high reflectivity and low transmittance. In this study, we replace the conventional aluminum top electrode with a transparent aluminum-doped zinc oxide (AZO) electrode, the band level of which matches well with that of the intrinsic layer of the silicon thin film solar cell and has high transmittance. We show that the AZO effectively replaces the top metal electrode and the bottom fluorine-doped tin oxide (FTO) substrate without a noticeable degradation of the photovoltaic characteristics.

반응성 sputtering법으로 제막된 ZnO : Al 박막의 전기.광학적 특성 (Electrical and optical properties of ZnO:Al thin films prepared by reactive sputtering method)

  • 유병석;유세웅;이정훈
    • 한국결정성장학회지
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    • 제6권4호
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    • pp.480-492
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    • 1996
  • Al이 2 wt% 포함되어 있는 Zn 금속 target을 사용하여 반응성 직류 magnetron sputtering법으로 AZO(Aluminum doped Zinc Oxide) 투명전도막을 제막하였다. 반응성 가스인 산소의 분압과 유량을 조절하여 투과율과 전도도가 모두 우수한 전이영역을 발견하였고 전이영역을 안정적으로 유지하기 위한 증착조건을 찾아냈다. ZnO:Al막의 XRD분석결과 산화막이나 전이영역에서 증착된 막들은 ZnO결정의 (002)면의 peak가 유일하게 관찰되었다.

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Thermal Stability of Hydrogen Doped AZO Thin Films Prepared by r.f. Magnetron Sputtering

  • 박용섭;이수호;김중규;하종찬;홍병유;이준신;이재형
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제44회 동계 정기학술대회 초록집
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    • pp.699-700
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    • 2013
  • Aluminum and hydrogen doped zinc oxide (AZHO) films were prepared by r.f. magnetron sputtering. The structural, electrical, and optical properties of the AHZO films were investigated in terms of the annealing conditions to study the thermal stability. The XRD measurements revealed that the degree of c-axis orientation was decreased and the crystallintiy of the films was deteriorated by the heat treatment. The electrical resistivity was significantly increased when the films were annealed at higher temperature. Although the optical transmittance of AHZO films didn't highly changed by heat treatment, the optical band gap was reduced, regardless of annealing temperature and duration. The thermal stability of AHZO films was worse compared to AZO films.

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Hf의 도핑에 따른 Al-Zn-O 박막의 물성 분석 (Property analysis of Hafnium doped Aluminum-Zinc-Oxide films)

  • 이상혁;전현식;박진석
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2015년도 제46회 하계학술대회
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    • pp.1149-1150
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    • 2015
  • In this study, hafnium was doped into aluminum zinc oxide (AZO) films were deposited on glass and Si substrates at room temperature via co-sputtering by varying the electric power applied to the Hf target. The properties of deposited Hf-doped AZO films, such as crystalline structure, optical transmittance, and band gap were analyzed using various methods such as X-ray diffraction (XRD) and UV/visible spectrophotometer. The experimental results confirmed that the abovementioned properties of Hf-AZO films strongly depended on the Hf sputtering power.

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Nd:YAG-PLD법에 의해 제작된 ZnO:AI 박막의 구조적, 광학적, 전기적 특성 (Structural, Optical and Electrical Properties of AI Doped ZnO Thin Films Prepared by Nd:YAG-PLD Technology)

  • 노임준;임재성;이천;신백균
    • 전기학회논문지
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    • 제56권9호
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    • pp.1596-1601
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    • 2007
  • Aluminum doped zinc oxide (AZO) thin films were deposited on coming glass substrates using an Nd:YAG pulsed laser deposition technology. The AZO thin films were deposited with various growth conditions such as the substrate temperature and oxygen partial pressure. In this work, we used various measurement technologies in order to investigate the electrical, structural, and optical properties of the AZO thin films. Among the AZO thin films, the one prepared at the substrate temperature of $300^{\circ}C$ and oxygen partial pressure of 5 mTorr showed the best properties of an electrical resistivity of $4.63{\times}10^{-4}{\Omega}{\cdot}cm$, a carrier concentration of $9.25{\times}10^{20}cm^{-3}$, and a carrier mobility of $31.33cm^2/V{\cdot}s$. All the AZO thin films showed an high average optical transmittance over 90 % in visible region.

Correlation Between Energy Gap and Defect Formation of Al Doped Zinc Oxide on Carbon Doped Silicon Oxide

  • Oh, Teresa;Kim, Chy Hyung
    • Transactions on Electrical and Electronic Materials
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    • 제15권4호
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    • pp.207-212
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    • 2014
  • Aluminum-doped zinc oxide (AZO) films were deposited on SiOC/Si wafer by an RF-magnetron sputtering system, by varying the deposition parameters of radio frequency power from 50 to 200 W. To assess the correlation of the optical properties between the substrate and AZO thin film, photoluminescence was measured, and the origin of deep level emission of AZO thin films grown on SiOC/Si wafer was studied. AZO formed on SiOC/Si substrates exhibited ultraviolet emission due to exciton recombination, and the visible emission was associated with intrinsic and extrinsic defects. For the AZO thin film deposited on SiOC at low RF-power, the deep level emission near the UV region is attributed to an increase of the variations of defects related to the AZO and SiOC layers. The applied RF-power influenced an energy gap of localized trap state produced from the defects, and the gap increased at low RF power due to the formation of new defects across the AZO layer caused by lattice mismatch of the AZO and SiOC films. The optical properties of AZO films on amorphous SiOC compared with those of AZO film on Si were considerably improved by reducing the roughness of the surface with low surface ionization energy, and by solving the problem of structural mismatch with the AZO film and Si wafer.