• Title/Summary/Keyword: Indium tin oxide ($In_2O_3-SnO_2$

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The Effect of Zn/Sn Different Raito of InZnSnO Thin Films Prepared by RF Magnetron Sputtering (RF 마그네트론 스퍼터를 사용하여 증착한 IZTO 박막의 Zn/Sn 비율에 따른 효과)

  • Kim, Ki Hwan;Putri, Maryane;Koo, Chang Young;Lee, Jung-A;Kim, Jeong-Joo;Lee, Hee Young
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.26 no.8
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    • pp.591-596
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    • 2013
  • Indium Zinc Tin Oxide (IZTO) thin films were developed as an alternative to Indium Tin Oxide (ITO) thin films. ITO material which has been acknowledged with its low resistivity and optical transparency of 85-90% has been used as major transparent conducting oxide (TCO) materials. However, due to the limited source, high price, and instability problems at high temperature of indium, many researches has been focused on indium-saving TCO materials. Mason Group of Northwestern University was reported to expand the solubility limit up to 40% by co-doping with 1:1 ratio of $Zn^{+2}$ and $Sn^{+4}$ ions. In this study, the properties of IZTO thin films corresponding to Zn/Sn different ratio were investigated. In addition, the effect of substrate temperature variable to the structural, optical and electrical properties of IZTO thin films was investigated.

Study on IZTO and ITO Films Deposited on PI Substrate by Pulsed DC Magnetron Sputtering System

  • Ko, Yoon-Duk;Kim, Joo-Yeob;Joung, Hong-Chan;Lee, Chang-Hun;Bae, Jung-Ae;Choi, Byung-Hyun;Ji, Mi-Jung;Kim, Young-Sung
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.93-93
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    • 2011
  • The Indium Zinc Tin Oxide (IZTO) and Indium Tin Oxide (ITO) thin films are grown on PI substrate at different substrate temperature by pulsed DC magnetron sputtering with a sintered ceramic target of IZTO (In2O3 70 wt.%, ZnO 15 wt.%, SnO2 15 wt.%) and ITO (In2O3 90wt.%, SnO2 10wt.%). The structural, electrical, and optical properties are investigated. The IZTO thin films deposited at low temperature showed relatively low electrical resistivity compared to ITO thin films deposited at low temperature. As a result, we could prepare the IZTO thin films with the resistivity as low as $5.6{\times}10^{-4}({\Omega}{\cdot}m)$. Both of the films deposited on PI substrate showed an average transmittance over 80% in visible range (400.800nm). Overall, IZTO thin film is a promising candidate as an alternative TCO material to ITO in flexible and OLED devices.

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Low Temperature Deposition of the $In_2O_3-SnO_2$, $SnO_2$ and $SiO_2$ on the Plastic Substrate by DC Magnetron Sputtering

  • Kim, Jin-Yeol;Kim, Eung-Ryeol;Lee, Jae-Ho;Kim, Soon-Sik
    • Journal of Information Display
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    • v.2 no.1
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    • pp.38-42
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    • 2001
  • Thin films of $In_2O_3-SnO_2$(ITO), $SnO_2$, and $SiO_2$ were prepared on the PET substrate by DC magnetron roll sputtering. 135 nm thick ITO film on $SiO_2$/PET substrate has sheet resistance as low as 55 ${\Omega}/square$ and transmittance as high as 85%. $H_2O$gas permeation through the film was 0.35 g/$m^2$ in a day. These properties are enough on optical film for the plastic LCD substrate or touch panel. Both refractive index and sheet resistance of ITO was found to be very sensitive to $O_2$ flow rate. Oxygen flow conditions have been optimized from 4 to 5 SCCM at $10^{-3}$torr. It is also shown that both thickness of $SnO_2$ and refractive index of $SiO_2$ decrease as $O_2$ flow rate increases.

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Synthesis of IZTO(Indium Zinc Tin Oxide) particle by spray pyrolysis and post-heat treatment and characterization of deposited IZTO film

  • Lim, Seong Taek;Kim, Sang Hern
    • Journal of the Korean Applied Science and Technology
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    • v.33 no.4
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    • pp.734-740
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    • 2016
  • The micron-sized indium zinc tin oxide (IZTO) particles were prepared by spray pyrolysis from aqueous precursor solution for indium, zinc, and tin and organic additives such as citric acid (CA) and ethylene glycol (EG) were added to aqueous precursor solution for indium, zinc, and tin. The obtained IZTO particles prepared by spray pyrolysis from the aqueous solution without organic additives had spherical and filled morphologies, whereas the IZTO particles obtained with organic additives had more hollow and porous morphologies. The micron-sized IZTO particles with organic additives were changed fully to nano-sized IZTO particles, whereas the micron-sized IZTO particles without organic additives were not changed fully to nano-sized IZTO particle after post-treatment at $700^{\circ}C$ for 2 hours and wet-ball milling for 24 hours. Surface resistances of micron-sized IZTO's before post-heat treatment and wet-ball milling were much higher than those of nano-sized IZTO's after post-heat treatment and wet-ball milling. From IZTO with composition of 80 wt. % $In_2O_3$, 10 wt. % ZnO, and 10 wt. % $SnO_2$ which showed a smallest surface resistance IZTO after post-heat treatment and wet-ball milling, thin films were deposited on glass substrates by pulsed DC magnetron sputtering, and the electrical and optical properties were investigated.

Properties of IZTO Thin Film prepared by the Hetero-Target sputtering system (ITO-IZO 이종 타겟 이용한 Indium Zinc Tin Oxide(IZTO)박막의 특성)

  • Kim, Dae-Hyun;Rim, You-Seong;Jang, Kyung-Uk;Kim, Kyung-Hwan
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2008.06a
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    • pp.439-440
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    • 2008
  • Indium Zinc Tin Oxide (IZTO) thin films for transparent thin film transistor (TTFT) were deposited on glass substrate at room temperature by facing targets sputtering (FTS). The FTS system was designed to array two targets facing each other and forms the high- density plasma between. Two different kinds of targets were installed on FTS system. One is ITO ($In_2O_3$ 90wt.%, $SnO_2$ 10wt.%), the other is IZO($In_2O_3$ 90wt%, ZnO 10wt%). The conductive and optical properties of IZTO thin film is determined depending on variation of DC power and working pressure. Therefore, IZTO thin films were prepared with different DC power and working pressure. As-deposited IZTO thin films were investigated by a UV/VIS spectrometer, an X-ray diffractometer (XRD), a scanning electron microscopy (SEM), a Hall Effect measurement system. As a result, all IZTO thin films deposited on glass substrate showed over 80% of transmittance in visible range (400~800 nm) at $O_2$ gas flow rate. We could obtain IZTO thin films with the lowest resistivity $5.67\times10^{-4}$ [$\Omega{\cdot}cm$] at $O_2$ gas flow rate 0.4 [sccm).

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Structural and Electrical Properties of Fluorine-doped Zinc Tin Oxide Thin Films Prepared by Radio-Frequency Magnetron Sputtering

  • Pandey, Rina;Cho, Se Hee;Hwang, Do Kyung;Choi, Won Kook
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.335-335
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    • 2014
  • Over the past several years, transparent conducting oxides have been extensively studied in order to replace indium tin oxide (ITO). Here we report on fluorine doped zinc tin oxide (FZTO) films deposited on glass substrates by radio-frequency (RF) magnetron sputtering using a 30 wt% ZnO with 70 wt% SnO2 ceramic targets. The F-doping was carried out by introducing a mixed gas of pure Ar, CF4, and O2 forming gas into the sputtering chamber while sputtering ZTO target. Annealing temperature affects the structural, electrical and optical properties of FZTO thin films. All the as-deposited FZTO films grown at room temperature are found to be amorphous because of the immiscibility of SnO2 and ZnO. Even after the as-deposited FZTO films were annealed from $300{\sim}500^{\circ}C$, there were no significant changes. However, when the sample is annealed temperature up to $600^{\circ}C$, two distinct diffraction peaks appear in XRD spectra at $2{\Theta}=34.0^{\circ}$ and $52.02^{\circ}$, respectively, which correspond to the (101) and (211) planes of rutile phase SnO2. FZTO thin film annealed at $600^{\circ}C$ resulted in decrease of resistivity $5.47{\times}10^{-3}{\Omega}cm$, carrier concentration ~1019 cm-3, mobility~20 cm2 V-1s-1 and increase of optical band gap from 3.41 to 3.60 eV with increasing the annealing temperatures and well explained by Burstein-Moss effect. Change of work function with the annealing temperature was obtained by ultraviolet photoemission spectroscopy. The increase of annealing temperature leads to increase of work function from ${\phi}=3.80eV$ (as-deposited FZTO) to ${\phi}=4.10eV$ ($600^{\circ}C$ annealed FZTO) which are quite smaller than 4.62 eV for Al-ZnO and 4.74 eV for SnO2. Through X-ray photoelectron spectroscopy, incorporation of F atoms was found at around the binding energy of 684.28 eV in the as-deposited and annealed FZTO up to 400oC, but can't be observed in the annealed FZTO at 500oC. This result indicates that F atoms in FZTO films are loosely bound or probably located in the interstitial sites instead of substitutional sites and thus easily diffused into the vacuum from the films by thermal annealing. The optical transmittance of FZTO films was higher than 80% in all specimens and 2-3% higher than ZTO films. FZTO is a possible potential transparent conducting oxide (TCO) alternative for application in optoelectronics.

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Effect of Tin Codoping on Transport and Magnetic Properties of Chromium-doped Indium Oxide Films

  • Kim, Hyo-Jin;Kim, Hyoun-Soo;Kim, Do-Jin;Ihm, Young-Eon;Choo, Woong-Kil;Hwang, Chan-Yong
    • Journal of Magnetics
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    • v.13 no.3
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    • pp.88-91
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    • 2008
  • This study examined the effect of Sn co-doping on the transport and magnetic properties of Cr-doped $In_2O_3$ thin films grown on (100) silicon substrates by pulsed laser deposition. The experimental results showed that Sn co-doping enhances the magnetization and appearance of the anomalous Hall effect, and increases the carrier (electron) concentration. These results suggest that the conduction carrier plays an important role in enhancing the ferromagnetism of a laser-deposited Cr-doped $In_2O_3$ film, which may have applications in transparent oxide semiconductor spin electronics devices.

증착압력과 $O_2$ 농도 변화에 따른 Indium-zinc-tin-oxide(IZTO) 박막의 투명전도 특성에 관한 연구

  • Son, Dong-Jin;Nam, Eun-Gyeong;Jeong, Dong-Geun;Kim, Yong-Seong
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.02a
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    • pp.214-214
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    • 2010
  • Indium-tin-oxide(ITO)는 평판디스플레이 산업이 성장함에 따라 그 수요는 계속 늘고 있지만 세계적으로 In의 매장량의 한계로 그 단가가 매우 높다. 또한 ITO는 플렉시블 디스플레이에 적용함에 있어서 고온 공정으로 인해 많은 단점을 보이고 있어 이를 대체할 새로운 투명전극의 개발이 활발히 진행되고 있다. 본 연구에서는 IZTO($In_2O_3$:ZnO:$SnO_2$=80:10:10 wt.%)의 In 량을 절감한 조성의 타겟을 제조하였다. 그리고 유리기판 위에 IZTO 박막을 펄스 DC 마그네트론 스퍼터링을 이용하여 증착압력과 활성 산소의 분압을 변화시키며 증착하였다. 증착압력의 변화는 3mTorr~8mTorr 범위에서 제어하였고 활성 산소의 분압은 0%~3% 범위에서 제어하였으며 기판의 온도의 제어 없이 상온에서 증착하였다. 증착한 박막은 전기적, 광학적 및 구조적 특성 등을 조사하였다. 증착압력 6mTorr와 산소분압 2%의 조건에서 비저항은 $5.07{\times}10^{-4}\;({\Omega}{\cdot}cm)$, 캐리어 농도는 $2.96{\times}10^{20}(cm^{-3})$, 이동도는 $41.6(cm^{-2}/Vs)$로 가장 좋은 전기적 특성을 보였다. 박막의 투과율을 측정한 결과 평균 85% (400nm~800nm)이상의 우수한 광학적 특성을 보였다. 또한 이 IZTO 박막을 이용하여 OLED 소자를 제작하여 그 특성을 조사하였다. 조사 결과 플렉시블 디스플레이 분야에서 IZTO 박막은 In 절감효과와 상온 공정에서 우수한 투명전극 특성을 보여 ITO를 대체할 물질로 가능성을 보여주었다.

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Thermal treatment effects of sputtered ITO(glass) (Sputtered ITO(glass)의 열처리 효과)

  • Kim, Ho-Soo;Jung, Soon-Won;Koo, Kyung-Wan
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2001.11b
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    • pp.554-557
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    • 2001
  • Indium Tin Oxide(ITO) thin films have been fabricated by the dc magnetron sputtering technique with a target of a mixture $In_{2}O_{3}$(90mol%) and $SnO_{2}$(10mol%). We prepared ITO thin films with substrate temperature 200 to $400^{\circ}C$ and annealing temperature 200 to $500^{\circ}C$. Good polycrystalline-structured ITO films with a low electrical resistivity of $3.4{\times}10^{-4}\Omega{\cdot}cm$ have been obtained. The visible light transmittance of all obtained films was over 80 %.

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Thermal treatment effects of sputtered ITO(glass) (Sputtered ITO(glass)의 열처리 효과)

  • 김호수;정순원;구경완
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2001.11a
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    • pp.554-557
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    • 2001
  • Indium Tin Oxide(ITO) thin films have been fabricated by the dc magnetron sputtering technique with a target of a mixture In$_2$O$_3$(90mo1%) and SnO$_2$(10mo1%). We prepared ITO thin films with substrate temperature 200 to 400$^{\circ}C$ and annealing temperature 200 to 500$^{\circ}C$ food polycrystalline-structured ITO films with a low electrical resistivity of 3.4${\times}$10$\^$-4/ Ω$.$cm have been obtained. The visible light transmittance of all obtained films was over 80 %.

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