• 제목/요약/키워드: ZnO:$TiO_2$ film

검색결과 81건 처리시간 0.031초

W 도핑된 ZnO 박막을 이용한 저항 변화 메모리 특성 연구

  • 박소연;송민영;홍석만;김희동;안호명;김태근
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제44회 동계 정기학술대회 초록집
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    • pp.410-410
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    • 2013
  • Next-generation nonvolatile memory (NVM) has attracted increasing attention about emerging NVMs such as ferroelectric random access memory, phase-change random access memory, magnetic random access memory and resistance random access memory (RRAM). Previous studies have demonstrated that RRAM is promising because of its excellent properties, including simple structure, high speed and high density integration. Many research groups have reported a lot of metal oxides as resistive materials like TiO2, NiO, SrTiO3 and ZnO [1]. Among them, the ZnO-based film is one of the most promising materials for RRAM because of its good switching characteristics, reliability and high transparency [2]. However, in many studies about ZnO-based RRAMs, there was a problem to get lower current level for reducing the operating power dissipation and improving the device reliability such an endurance and an retention time of memory devices. Thus in this paper, we investigated that highly reproducible bipolar resistive switching characteristics of W doped ZnO RRAM device and it showed low resistive switching current level and large ON/OFF ratio. This may be caused by the interdiffusion of the W atoms in the ZnO film, whch serves as dopants, and leakage current would rise resulting in the lowering of current level [3]. In this work, a ZnO film and W doped ZnO film were fabricated on a Si substrate using RF magnetron sputtering from ZnO and W targets at room temperature with Ar gas ambient, and compared their current levels. Compared with the conventional ZnO-based RRAM, the W doped ZnO ReRAM device shows the reduction of reset current from ~$10^{-6}$ A to ~$10^{-9}$ A and large ON/OFF ratio of ~$10^3$ along with self-rectifying characteristic as shown in Fig. 1. In addition, we observed good endurance of $10^3$ times and retention time of $10^4$ s in the W doped ZnO ReRAM device. With this advantageous characteristics, W doped ZnO thin film device is a promising candidates for CMOS compatible and high-density RRAM devices.

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저전압 구동 전계 발광소자의 제작 및 그 특성 (Fabrication and Characteristics of LowVoltage Driven Electroluminescent Device)

  • 배승춘;김영진;최규만;김기완
    • 전자공학회논문지A
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    • 제31A권9호
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    • pp.89-95
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    • 1994
  • BaTiO$_{x}$ thin film as insulator and ZnS:Mn film as phosphour layer for thin film electrouminescent device have been deposited by thermal evalporation and dependence of electrical and opeical characeristics have been studied. The optimum deposition conditions for the BaTiO$_{x}$ thin film are such that BaTiO$_{3}$/TiO$_{2}$ mixing ratio was 0.7, sub strate temperature was 100 $^{\circ}C$ and annealing time was 1 hour at 300 $^{\circ}C$. In this case, the dielectric constant of BaTiO$_{x}$ thin film fabricated under those optimum conditions was 26, and for AnS:Mn thin films, the crystallization was done well and the deposition rate was 1300 $\AA$/min when substrate temperature was 200$^{\circ}C$. Thin film Electroluminescent devices were fabricated using BaTiO$_{x}$ and AnS:Mn thin films. The luminescence threshold voltage of device was 41.5 V and brightness was 1.2${\mu}W/cm^{2}$ at appied voltage of 50 V.

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서로 다른 소스/드레인 전극물질을 이용한 비정질 In-Ga-Zn-O 박막트랜지스터 성능향상 (Performance Improvement of Amorphous In-Ga-Zn-O Thin-film Transistors Using Different Source/drain Electrode Materials)

  • 김승태;조원주
    • 한국전기전자재료학회논문지
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    • 제29권2호
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    • pp.69-74
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    • 2016
  • In this study, we proposed an a-IGZO (amorphous In-Ga-Zn-O) TFT (thin-film transistor) with off-planed source/drain structure. Furthermore, two different electrode materials (ITO and Ti) were applied to the source and drain contacts for performance improvement of a-IGZO TFTs. When the ITO with a large work-function and the Ti with a small work-function are applied to drain electrode and source contact, respectively, the electrical performances of a-IGZO TFTs were improved; an increased driving current, a decreased leakage current, a high on-off current ratio, and a reduced subthreshold swing. As a result of gate bias stress test at various temperatures, the off-planed S/D a-IGZO TFTs showed a degradation mechanism due to electron trapping and both devices with ITO-drain or Ti-drain electrode revealed an equivalent instability.

Zn-Ti계용융아연 도금강판의 착색화 특성 (Charactristice of a colored Galvanized Coating using Ti-Zn Alloy System)

  • 전선호
    • 한국표면공학회지
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    • 제30권5호
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    • pp.320-332
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    • 1997
  • The development of colored surface on zinc coating by the oxidation of a melten alloy of zinc with a minor amount of oxygen-avid additive such as tianium has been studied. Using a galvanizing Zinc alloy containing 0.1 to 0.3wt%Ti, gold, purple or blue color was developed clearly and stably, depending upon the extent of oxidation, by air cooling after hot dipping in a bath at temperature of $550^{\circ}C$ to $600^{\circ}C$. The source of the color is light interference with surface oxide layer. THe final color depends on the thickness of the color depends on the thickness of $TiO_2$, played So compositing, temperature and time at elevated temperature after are all controlling variables. Since oxidation film such as $TiO_2$ played role of passivation film, the corrosion resistance in a colored galvanized steel sheet. It is also thought that surface oxide layer of $TiO_2$ inhibited dissolution of the coating layer.

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ZnO nanostructures for e-paper and field emission display applications

  • Sun, X.W.
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2008년도 International Meeting on Information Display
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    • pp.993-994
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    • 2008
  • Electrochromic (EC) devices are capable of reversibly changing their optical properties upon charge injection and extraction induced by the external voltage. The characteristics of the EC device, such as low power consumption, high coloration efficiency, and memory effects under open circuit status, make them suitable for use in a variety of applications including smart windows and electronic papers. Coloration due to reduction or oxidation of redox chromophores can be used for EC devices (e-paper), but the switching time is slow (second level). Recently, with increasing demand for the low cost, lightweight flat panel display with paper-like readability (electronic paper), an EC display technology based on dye-modified $TiO_2$ nanoparticle electrode was developed. A well known organic dye molecule, viologen, was adsorbed on the surface of a mesoporous $TiO_2$ nanoparticle film to form the EC electrode. On the other hand, ZnO is a wide bandgap II-VI semiconductor which has been applied in many fields such as UV lasers, field effect transistors and transparent conductors. The bandgap of the bulk ZnO is about 3.37 eV, which is close to that of the $TiO_2$ (3.4 eV). As a traditional transparent conductor, ZnO has excellent electron transport properties, even in ZnO nanoparticle films. In the past few years, one-dimension (1D) nanostructures of ZnO have attracted extensive research interest. In particular, 1D ZnO nanowires renders much better electron transportation capability by providing a direct conduction path for electron transport and greatly reducing the number of grain boundaries. These unique advantages make ZnO nanowires a promising matrix electrode for EC dye molecule loading. ZnO nanowires grow vertically from the substrate and form a dense array (Fig. 1). The ZnO nanowires show regular hexagonal cross section and the average diameter of the ZnO nanowires is about 100 nm. The cross-section image of the ZnO nanowires array (Fig. 1) indicates that the length of the ZnO nanowires is about $6\;{\mu}m$. From one on/off cycle of the ZnO EC cell (Fig. 2). We can see that, the switching time of a ZnO nanowire electrode EC cell with an active area of $1\;{\times}\;1\;cm^2$ is 170 ms and 142 ms for coloration and bleaching, respectively. The coloration and bleaching time is faster compared to the $TiO_2$ mesoporous EC devices with both coloration and bleaching time of about 250 ms for a device with an active area of $2.5\;cm^2$. With further optimization, it is possible that the response time can reach ten(s) of millisecond, i.e. capable of displaying video. Fig. 3 shows a prototype with two different transmittance states. It can be seen that good contrast was obtained. The retention was at least a few hours for these prototypes. Being an oxide, ZnO is oxidation resistant, i.e. it is more durable for field emission cathode. ZnO nanotetropods were also applied to realize the first prototype triode field emission device, making use of scattered surface-conduction electrons for field emission (Fig. 4). The device has a high efficiency (field emitted electron to total electron ratio) of about 60%. With this high efficiency, we were able to fabricate some prototype displays (Fig. 5 showing some alphanumerical symbols). ZnO tetrapods have four legs, which guarantees that there is one leg always pointing upward, even using screen printing method to fabricate the cathode.

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ZnO 박막 센서의 TMA 가스 및 Hall 효과 측정 (The Hall Measurement and TMA Gas Detection of ZnO-based Thin Film Sensors)

  • 류지열;박성현;최혁환;이명교;권태하
    • 센서학회지
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    • 제6권4호
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    • pp.265-273
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    • 1997
  • RF 마그네트론 스펏터링 방법으로 ZnO 박막을 성장시켜 TMA 가스 센서를 제작하였다. ZnO 박막의 성장분위기 가스와 첨가불순물이 박막의 표면 캐리어(전자) 농도, Hall 전자 이동도, 전기저항률 및 감도에 미치는 영향을 동작온도와 TMA 가스 농도를 변화시켜가며 조사하였다. 산소분위기에서 성장된 박막이 아르곤의 경우보다, 촉매불순물이 첨가된 박막이 첨가되지 않은 경우보다, 각각 표면 캐리어 농도와 Hall 전자 이동도가 높았고, 높은 감도 및 낮은 전기저항률을 나타내었다. 산소분위기에서 성장되었고, 불순물로 4 wt.%의 $Al_{2}O_{3}$, 1 wt.%의 $TiO_{2}$ 및 0.2 wt.%의 $V_{2}O_{3}$를 첨가한 ZnO 박막으로 만든 센서가 가장 높은 표면 캐리어 농도 $5.95{\times}10^{20}cm^{-3}$ 및 Hall 전자 이동도 $177\;cm^{2}/V{\cdot}s$와 가장 낮은 전기저항률 $0.59{\times}10^{-4}{\Omega}{\cdot}cm$ 및 가장 높은 감도 12.1을 나타내었다. 이때 TMA 가스 농도는 8 ppm, 동작온도는 $300^{\circ}C$였다.

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RF-magnetron sputtering을 이용한 TiIZO 기반의 산화물 반도체에 대한 연구 (Effect of Titanium Addition on Indium Zinc Oxide Thin Film Transistors by RF-magnetron Sputtering)

  • 우상현;임유성;이문석
    • 전자공학회논문지
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    • 제50권7호
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    • pp.115-121
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    • 2013
  • 본 연구에서는 TiInZnO(TiIZO)를 채널층으로 하는 thin film transistors(TFTs)를 제작하였다. TiIZO 층은 InZnO(IZO)와 Ti target을 이용하여 RF-magnetron co-sputtering system 방식으로 상온에서 증착하였으며, 어떠한 열처리도 하지 않았다. Ti의 첨가가 어떠한 영항을 주는지 연구하기 위해 X-ray diffraction(XRD), X-ray photoelectron spectroscopy(XPS) 분석을 시행하였으며, 전기적인 특성을 측정하였다. Ti의 첨가는 Ti target의 rf power 변화에 따라 달리하였다. Ti의 첨가가 전류점멸비에 큰 영향을 주는 것을 확인하였고, 이것은 Ti의 산화력이 In과 Zn보다 뛰어나 산소결함자리의 형성을 억제하기 때문이다. Ti의 rf power가 40W일 때 가장 좋은 특성을 나타냈으며, 전류점멸비, 전자이동도, 문턱전압, subthreshold swing이 각각 $10^5$, 2.09 [$cm^2/V{\cdot}s$]. 2.2 [V], 0.492 [V/dec.]로 측정되었다.

Atomic Layer Deposition for Energy Devices and Environmental Catalysts

  • Kim, Young Dok
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제45회 하계 정기학술대회 초록집
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    • pp.77.2-77.2
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    • 2013
  • In this talk, I will briefly review recent results of my group related to application of atomic layer deposition (ALD) for fabricating environmental catalysts and organic solar cells. ALD was used for preparing thin films of TiO2 and NiO on mesporous silica with a mean pore size of 15 nm. Upon depositing TiO2 thin films of TiO2 using ALD, the mesoporous structure of the silica substrate was preserved to some extent. We show that efficiency for removing toluene by adsorption and catalytic oxidation is dependent of mean thickness of TiO2 deposited on silica, i.e., fine tuning of the thickness of thin film using ALD can be beneficial for preparing high-performing adsorbents and oxidation catalysts of volatile organic compound. NiO/silica system prepared by ALD was used for catalysts of chemical conversion of CO2. Here, NiO nanoparticles are well dispersed on silica and confiend in the pore, showing high catalytic activity and stability at 800oC for CO2 reforming of methane reaction. We also used ALD for surface modulation of buffer layers of organic solar cell. TiO2 and ZnO thin films were deposited on wet-chemically prepared ZnO ripple structures, and thin films with mean thickness of ~2 nm showed highest power conversion efficiency of organic solar cell. Moreover, performance of ALD-prepared organic solar cells were shown to be more stable than those without ALD. Thin films of oxides deposited on ZnO ripple buffer layer could heal defect sites of ZnO, which can act as recombination center of electrons and holes.

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Ti/Au 금속과 n-type ZnO 박막의 Ohmic 접합 연구 (Ohmic Contact of Ti/Au Metals on n-type ZnO Thin Film)

  • 이경수;서주영;송후영;김은규
    • 한국진공학회지
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    • 제20권5호
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    • pp.339-344
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    • 2011
  • C-plane 사파이어 기판 위에 펄스 레이저 증착법으로 증착시킨 n-type ZnO 박막에 대한 Ti/Au 금속의 Ohmic 접합특성을 TLM (transfer length method) 패턴 전극을 통하여 연구하였다. 여기서, Ti와 Au 금속박막은 전자빔 증착기와 열 증착기로 각각 35 nm와 90 nm 두께로 증착하였으며, TLM패턴은 광 리소그래피 법으로 면적이 $100{\times}100{\mu}m^2$인 전극패턴을 6~61 ${\mu}m$ 간격으로 형성하였다. Ti/Au 금속박막과 ZnO 반도체 사이의 전기적인 성질을 개선하고 응력과 계면 결함을 감소시키기 위해, 산소 가스 분위기로 $100{\sim}500^{\circ}C$ 온도에서 각각 1분간 급속열처리를 하였다. $300^{\circ}C$의 온도에서 열처리한 시료에서 $1.1{\times}10^{-4}{\Omega}{\cdot}cm^2$의 가장 낮은 비저항 값을 보였는데, 이것은 열처리 동안 티타늄 산화막 형성과정에서 ZnO 박막 표면 근처에 산소빈자리가 형성됨으로써 나타나는 전자농도의 증가가 주된 원인으로 고려되었다.

ZnO/Ti/ZnO 박막의 결정성 및 전기광학적 완성도 개선 연구 (Enhancements of Crystallization and Opto-Electrical performance of ZnO/Ti/ZnO Thin Films)

  • 장진규;김유성;이연학;최진영;이인식;김대욱;차병철;공영민;김대일
    • 한국표면공학회지
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    • 제56권2호
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    • pp.147-151
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    • 2023
  • Transparent ZnO (100 nm thick) and ZnO/Ti/ZnO (ZTZ) films were prepared with radio frequency (RF) and direct current (DC) magnetron sputtering on the glass substrate at room temperature. During the ZTZ film deposition, the thickness of the Ti interlayer was varied, such as 6, 9, 12, and 15 nm, while the thickness of ZnO films was kept at 50 nm to investigate the effect of the Ti interlayer on the crystallization and opto-electrical performance of the films. From the XRD pattern, it is concluded that the 9 nm thick Ti interlayer showed some characteristic peaks of Ti (200) and (220), and the grain size of the ZnO (002) enlarged from 13.32 to 15.28 nm as Ti interlayer thickness increased. In an opto-electrical performance observation, ZnO single-layer films show a figure of merit of 1.4×10-11 Ω-1, while ZTZ films with a 9 nm-thick Ti interlayer show a higher figure of merit of 2.0×10-5 Ω-1.