• Title/Summary/Keyword: Zn(S/O)

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Effects of Soil-Plant Interactive System on Response to Exposure to ZnO Nanoparticles

  • Lee, Sooyeon;Kim, Saeyeon;Kim, Sunghyun;Lee, Insook
    • Journal of Microbiology and Biotechnology
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    • v.22 no.9
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    • pp.1264-1270
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    • 2012
  • The ecotoxicological effects of nanomaterials on animal, plant, and soil microorganisms have been widely investigated; however, the nanotoxic effects of plant-soil interactive systems are still largely unknown. In the present study, the effects of ZnO nanoparticles (NPs) on the soil-plant interactive system were estimated. The growth of plant seedlings in the presence of different concentrations of ZnO NPs within microcosm soil (M) and natural soil (NS) was compared. Changes in dehydrogenase activity (DHA) and soil bacterial community diversity were estimated based on the microcosm with plants (M+P) and microcosm without plants (M-P) in different concentrations of ZnO NPs treatment. The shoot growth of M+P and NS+P was significantly inhibited by 24% and 31.5% relative to the control at a ZnO NPs concentration of 1,000 mg/kg. The DHA levels decreased following increased ZnO NPs concentration. Specifically, these levels were significantly reduced from 100 mg/kg in M-P and only 1,000 mg/kg in M+P. Different clustering groups of M+P and M-P were observed in the principal component analysis (PCA). Therefore, the M-P's soil bacterial population may have more toxic effects at a high dose of ZnO NPs than M+P's. The plant and activation of soil bacteria in the M+P may have a less toxic interactive effect on each of the soil bacterial populations and plant growth by the ZnO NPs attachment or absorption of plant roots surface. The soil-plant interactive system might help decrease the toxic effects of ZnO NPs on the rhizobacteria population.

Enhanced pH Response of Solution-gated Graphene FET by Using Vertically Grown ZnO Nanorods on Graphene Channel

  • Kim, B.Y;Jang, M.;Shin, K.-S.;Sohn, I.Y;Kim, S.-W.;Lee, N.-E
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.434.2-434.2
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    • 2014
  • We observe enhanced pH response of solution-gated field-effect transistors (SG-FET) having 1D-2D hybrid channel of vertical grown ZnO nanorods grown on CVD graphene (Gr). In recent years, SG-FET based on Gr has received a lot of attention for biochemical sensing applications, because Gr has outstanding properties such as high sensitivity, low detection limit, label-free electrical detection, and so on. However, low-defect CVD Gr has hardly pH responsive due to lack of hydroxyl group on Gr surface. On the other hand, ZnO, consists of stable wurtzite structure, has attracted much interest due to its unique properties and wide range of applications in optoelectronics, biosensors, medical sciences, etc. Especially, ZnO were easily grown as vertical nanorods by hydrothermal method and ZnO nanostructures have higher sensitivity to environments than planar structures due to plentiful hydroxyl group on their surface. We prepared for ZnO nanorods vertically grown on CVD Gr (ZnO nanorods/Gr hybrid channel) and to fabricate SG-FET subsequently. We have analyzed hybrid channel FETs showing transfer characteristics similar to that of pristine Gr FETs and charge neutrality point (CNP) shifts along proton concentration in solution, which can determine pH level of solution. Hybrid channel SG-FET sensors led to increase in pH sensitivity up to 500%, compared to pristine Gr SG-FET sensors. We confirmed plentiful hydroxyl groups on ZnO nanorod surface interact with protons in solution, which causes shifts of CNP. The morphology and electrical characteristics of hybrid channel SG-FET were characterized by FE-SEM and semiconductor parameter analyzer, respectively. Sensitivity and sensing mechanism of ZnO nanorods/Gr hybrid channel FET will be discussed in detail.

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Zinc tin oxide 비정질 산화물 반도체 박막에 대한 Ga 도핑 영향

  • Kim, Hye-Ri;Kim, Dong-Ho;Lee, Geon-Hwan;Song, Pung-Geun
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.02a
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    • pp.198-198
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    • 2010
  • 산화물 반도체는 넓은 밴드갭을 가지고 있어 가시광에서 투명하며 높은 이동도로 디스플레이 구동 회로 집적에 유리하다. 또한 가격 및 공정 측면에서도 기존의 Si 기판 소자에 비해 여러 장점을 가지고 있어 차세대 디스플레이의 핵심 기술로 산화물반도체에 대한 관심이 높아지고 있다. 본 연구는 RF 동시 스퍼터링법을 이용하여 Zn-Sn-O 박막을 제조하고, 그 전기적, 광학적, 구조적 특성에 대해 조사하였다. 일정한 증착 온도($100^{\circ}C$)에서 ZnO와 $SnO_2$ 타켓의 인가 파워를 조절하여 Sn/(Zn+Sn) 성분비가 약 40~85%인 Zn-Sn-O 박막을 제조하였다. Sn 함량이 증가할수록 박막의 비저항은 약 $2{\times}10^{-1}$ (Sn 45%)에서 약 $2\;{\times}\;10^{-2}\;{\Omega}{\cdot}cm$ (Sn 67%)까지 감소하다가 다시 증가하는 경향을 보였다. 이 때 캐리어 농도는 $3\;{\times}\;10^{18}$에서 $4\;{\times}\;10^{19}\;cm^{-3}$으로 증가하였으며, 이동도는 11에서 $8\;cm^2/V{\cdot}s$로 약간 감소하였다. XRD분석결과, 제조된 모든 Zn-Sn-O 박막은 비정질 구조를 가짐을 확인하였다. 투과율은 박막 내 Sn함량 증가에 따라 감소하나 모든 시편이 약 70%이상의 투과도를 나타내었다. Zn-Sn-O 박막의 Ga 도핑 영향을 확인하기 위해 ZnO 타켓 대신 갈륨이 5.7 wt.% 도핑된 GZO 타켓을 사용하여 동일한 공정조건에서 박막을 제조하였다. Ga이 첨가된 Zn-Sn-O 박막은 구조적 특성과 광학적 특성에서는 큰 차이를 보이지 않았으나, 전기적 특성의 뚜렷한 변화가 관찰되었다. Sn 함량이 45%인 Zn-Sn-O 박막의 경우, 캐리어 농도가 $3.1\;{\times}\;10^{18}$에서 Ga 도핑 효과로 인해 $1.7\;{\times}\;10^{17}\;cm^{-3}$으로 크게 감소하고 이동도는 11에서 $20\;cm^2/V{\cdot}s$로 증가하였다. 따라서 본 연구는 Zn-Sn-O 비정질 박막에 Ga을 도핑함으로써 산화물 반도체재료로서 요구되는 물성을 만족시킬 수 있다는 가능성을 제시하였다.

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Evaluation of 1,1,2-trichloroethylene Removal Efficiency Using Composites of Nano-ZnO Photocatalyst and Various Organic Supports (다양한 유기계 지지체와 광촉매 Nano-ZnO 복합체를 활용한 1,1,2-trichloroethylene 제거 효율 평가)

  • Jang, Dae Gyu;Ahn, Hosang;Kim, Jeong Yeon;Ahn, Chang Hyuk;Lee, Saeromi;Kim, Jong Kyu;Joo, Jin Chul
    • Journal of Korean Society of Environmental Engineers
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    • v.36 no.11
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    • pp.771-780
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    • 2014
  • In this study, the various organic supports (i.e., silicone, acrylonitrile-butadiene-styrene, epoxy, and, butadiene rubber) with great sorption capacity of organic contaminants were chosen to develop nano-ZnO/organic composites (NZOCs) and to prevent the detachment of nano-ZnO particles. The water resistance of the developed NZOCs were evaluated, and the feasibility of the developed NZOCs were investigated by evaluating the removal efficiency of 1,1,2-trichloroethylene (TCE) in the aqueous phase. Based on the results from water-resistance experiments, long-term water treatment usage of all NZOCs was found to be feasible. According to the FE-SEM, EDX, and imaging analysis, nano-ZnO/butadiene rubber composite (NZBC) with various sizes and types of porosity and crack was measured to be coated with relatively homogeneously-distributed nano-ZnO particles whereas nano-ZnO/silicone composite (NZSC), nano-ZnO/ABS composite (NZAC), and nano-ZnO/epoxy composite (NZEC) with poorly-developed porosity and crack were measured to be coated with relatively heterogeneously-distributed nano-ZnO particles. The sorption capacity of NZBC was close to 60% relative to the initial concentration, and this result was mainly attributed to the amorphous structure of NZBC, hence the hydrophobic partitioning of TCE to the amorphous structure of NZBC intensively occurred. The removal efficiency of TCE in aqueous phase using NZBC was close to 99% relative to the initial concentration, and the removal efficiency of TCE was improved as the amount of NZBC increased. These results stemmed from the synergistic mechanisms with great sorption capability of butadiene rubber and superior photocatalytic activities of nano-ZnO. Finally, the removal efficiency of TCE in aqueous phase using NZBC was well represented by linear model ($R^2{\geq}0.936$), and the $K_{app}$ values of NZBC were from 2.64 to 3.85 times greater than those of $K_{photolysis}$, indicating that butadiene rubber was found to be the suitable organic supporting materials with enhanced sorption capacity and without inhibition of photocatalytic activities of nano-ZnO.

ALD를 이용하여 살펴본 CdSe/CdS Quantum Dot-sensitized Solar Cell에서의 TiO2 Passivation 효과

  • Park, Jin-Ju;Lee, Seung-Hyeop;Seol, Min-Su;Yong, Gi-Jung
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.08a
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    • pp.370-370
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    • 2011
  • ZnO 나노 라드 위에 Quantum dot을 형성하고 최종적으로 TiO2를 Atomic Layer Deposition방법으로 증착하여, 그 passivation 효과가 solar cell의 효율에 미친 영향에 대한 실험을 진행하였다. 암모니아 솔루션을 이용한 Hydrothermal 방법으로 수직한 1차원 형태의 ZnO 나노라드를 TCO 기판 위에 성장시킨다. 여기에 잘 알려진 SILAR와 CBD 방법으로 CdS, CdSe 양자점을 증착한다. 그리고 amorphous TiO2로 표면을 덮는 과정을 거치는데, TiO2가 좁은 간격으로 형성된 ZnO라드 구조 위에서 균일하고 정밀하게 증착되도록 하기 위해 Atomic Layer Deposition을 이용하였다. 사용된 precursor는 Titanium isopropoxide와 H2O이며, 실험상에서 0~5 nm 두께의 TiO2 박막을 형성해 보았다. 다양한 분석 방법을 통해 TiO2/QDs/ZnO의 shell-shell-core 구조를 조사했다. (Scanning Electron Microscopy (SEM), Transmission Electron Microscopy (TEM), X-Ray Diffraction (XRD), and X-ray Photoelectron Spectroscopy (XPS)). 이를 solar cell에 적용하고 I-V curve를 통해 그 효율을 확인하였으며, Electrochemical Impedance Spectroscopy (EIS)를 통해서 재결합 측면에서 나타나는 변화 양상을 확인하였다.

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GaInZnO 박막의 전자적.전기적 특성

  • Kim, Gyeom-Ryong;Lee, Sang-Su;Lee, Gang-Il;Park, Nam-Seok;Gang, Hui-Jae
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.08a
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    • pp.165-165
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    • 2010
  • GaInZnO는 투명 비정질 산화물 반도체로서 태양전지, 평판 액정 디스플레이, 잡음방지 코팅, 터치 디스플레이 패널, 히터, 광학 코팅 등 여러 응용에 쓰인다. 이 논문에서는 투명전자소자로 관심을 모으고 있는 GaInZnO의 전자적 그리고 전기적 특성을 측정하였다. GaInZnO 박막은 $SiO_2$ (100)/Si 기판위에 RF 마그네트론 스퍼터링 증착법으로 $Ga_2O_3:In_2O_3:ZnO$의 조성이 2:2:1로 된 타겟을 가지고 박막을 성장시켰다. 성장한 후에 RTP를 이용하여 30분간 열처리 하였다. GaInZnO의 전자적 특성을 나타내는 띠틈 및 실리콘 기판과의 원자가 띠 오프셋 값을 측정하였으며, 이 값들을 통해 GaInZnO박막과 실리콘 기판과의 띠 정렬도 수행하였다. 띠틈은 반사 전자 에너지 손실 분광법(REELS)을 이용하여 측정하였고, 원자가 띠 오프셋은 광전자 분광법(XPS)을 이용하여 측정하였다. 열처리 온도가 $400^{\circ}C$까지는 띠틈의 변화 및 XPS 결합에너지의 변화가 없는 것으로 보아 열적안정성이 우수함을 알 수 있다. 반면 $450^{\circ}C$에서의 띠틈이 감소하는 것으로 보아 $450^{\circ}C$에서는 열적안정성이 깨지는 것을 알 수 있다. GaInZnO 박막을 채널 층으로 하고 전극은 알루미늄(Al)으로 된 TFT를 제작하여 전기적 특성을 조사하였다. TFT 특성 결과 이동도가 약, subthreshold swing(S.S)이 약 1.5 V/decade, 점멸비가 약 $10^7$으로 측정되었다. 유리 위에 증착시킨 GaInZnO 박막의 투과율을 측정해본 결과 모든 시료가 가시광선 영역에서 80%이상의 투과율을 갖는 것으로 보아 투명전극소자로 응용이 가능하다는 것을 알 수 있었다.

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The characteristics of the luminous events caused between the ZnO arrester block and electrode (산화아연(ZnO) 피뢰기 소자와 전극사이에서 발생하는 방전광 특성)

  • Lee, B.H.;Pak, K.Y.;Kang, S.M.
    • Proceedings of the KIEE Conference
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    • 2004.07c
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    • pp.1869-1871
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    • 2004
  • The primary role of ZnO arresters is to protect transmission and distribution equipments against lightning surges. The extremely nonlinear V-I characteristics of the ZnO arrester obviates the need for isolation gaps and consequently it is continuously connected to line voltage. For this reason, ZnO arresters are degraded with increasing with time in actual power systems. In this work, the characteristics of the luminous events between the ZnO block and electrodes were investigated. As a result, the luminous events were effected by the impulse and the near polarity of the luminous event was intense near the grounded electrode. Also the luminous event may cause the degradation of ZnO arrester block.

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Challenge to Future Displays: Transparent AM-OLED driven by PEALD grown ZnO TFT

  • Ko Park, Sang-Hee;Hwang, Chi-Sun;Byun, Chun-Won;Ryu, Min-Ki;Lee, Jeong-Ik;Chu, Hye-Yong;Cho, Kyoung-Ik;Chae, Jang-Youl;Han, Se-Jin
    • 한국정보디스플레이학회:학술대회논문집
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    • 2007.08b
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    • pp.1249-1252
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    • 2007
  • We have fabricated 3.5” transparent AM-OLED panel driven by PEALD grown ZnO TFT. The performance of ZnO thin film transistor was improved by adapting top gate structure, protection layer for ZnO from photolithography process, optimizing temperature and plasma power of ZnO growth process. The ZnO-TFT has a mobility of $8.9cm^2/V.s$, a subthreshold swing of 0.95V, and an on/off ratio of $10^7$.

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Structural, Optical Properties of Ag-doped ZnO Nanorods by Hydrothermal Growth

  • Lee, Gi-Yong;Park, Jun-Seo;Kim, Ji-Hun;Ju, Hong-Ryeol;Han, Il-Gi;Go, Hyeong-Deok
    • Proceedings of the Korean Vacuum Society Conference
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    • 2013.02a
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    • pp.640-640
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    • 2013
  • 본 연구에서는 유리 기판과 Si 기판에 Ag-doped ZnO 나노로드를 수열합성법을 이용하여 성장하였다. ZnO는 UV 영역에서 exciton 발광을 하며, 가시광선에서도 발광을 하는 것으로 알려져 있다. 그리고 Ag 금속은 입자형태로 ZnO 박막에 도포되었을 때 UV영역의 발광 세기를 강화시킨다는 사실이 알려져 있다. 이러한 내용을 바탕으로 ZnO 나노로드 합성 용액에 Ag powder의 양을 변화시켜 첨가하고, 유리와 Si기판을 넣고 80도에서 30분간 성장하였다. XRD, XPS를 통해 구조적 특성 변화를 보았고 SEM을 통해 나노로드의 형태를 확인하였다. 또한 PL, 투과도 측정을 통해 Ag 도핑에 따른 광학적 특성 변화를 확인하였다. SEM 측정으로 샘플의 단면을 확인한 결과 Ag 도핑 농도에 따른 차이가 거의 없음을 알았다. ZnO 나노로드가 성장된 유리 기판은 본래의 유리기판보다 투과도가 높았으며, Ag를 많이 첨가할수록 투과도가 낮아졌다.

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A Study on Characteristics of ZnO/n-Si Low Cost Solar Cells (ZnO/n-Si 저가 박막태양전지의 특성연구)

  • Baik, D.G.;Cho, S.M.
    • Solar Energy
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    • v.19 no.1
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    • pp.29-36
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    • 1999
  • ZnO/n-Si junctions were fabricated by spin coating with ZnO precursor produced by the sol-gel process. In order to increase the electrical conductivity of ZnO films, the films were n-doped with Al impurity and subsequently annealed at about $450^{\circ}C$ under reducing environments. The ohmic contacts between n-Si and AI for a bottom electrode were successfully fabricated by doping the rear surface of Si substrate with phosphorous atoms. The front surface of the substrate was also doped with phosphorous atoms for improving the efficiency of the solar cells. Consequently, conversion efficiencies ranging up to about 5.3% were obtained. These efficiencies were found to decrease slowly with time because of the oxide films formed at the ZnO/Si interface upon oxygen penetration through the porous ZnO. Oxygen barrier layers could be necessary in order to prevent the reduction of conversion efficiencies.

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