• Title/Summary/Keyword: ZnO nanostructures

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판상형 산화아연의 합성 및 응용에 관한 연구 동향

  • Jang, Ui-Sun
    • Ceramist
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    • v.20 no.4
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    • pp.55-73
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    • 2017
  • As one of the most versatile semiconductors, zinc oxide (ZnO) with one-dimensional (1-D) nanostructures has been significantly developed for the application of ultraviolet (UV) lasers, photochemical sensors, photocatalysts, and so on. Such 1-D nanowires could be easily achieved due to the anisotropic growth rate along the [0001] direction. However, such typical growth habit leads to decrease the surface area of the (0001) plane, which plays a central role in not only UV lasing action but also photocatalytic reaction. This fact lead us to develop ZnO crystal with enhanced polar surface area through crystal growth control. The purpose of this review is to provide readers a simple route to plate-type ZnO crystal with highly enhanced polar surfaces and their applications for UV-laser, photocatalyst, and antibacterial agents. In addition, we will highlight the recent study on pilot-scale synthesis of plate-type ZnO crystal for industrial applications.

Properties of $Zn_xSnO_2$ Nanorods Synthesized by Hytrothermal Method

  • Yeo, Chang-Su;Lee, Gwan-Ho;Kang, Hee-Kyoung;Lee, Kyung-Hee;Yu, Byung-Yong;Song, Jong-Han;Chae, Kuen-Hwa
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.02a
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    • pp.313-313
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    • 2012
  • ZnO and $SnO_2$, well-known wide direct band-gap semiconductors, have been considered as the most promising functional materials due to their highly sensitive gas sensing and excellent optical properties. ZnO/$SnO_2$ epitaxial hetrostructure exhibited unique luminescence properties in contrast with individual tetra-pod ZnO and $SnO_2$ nanostructures. Polycrystalline $SnO_2$-based samples $Zn_xSn_{1-x}O_2$(x=0, 0.01, 0.03, 0.05) were prepared by solid state reaction and eco-friendly hydrothermal techniques. Scanning electron microscopy equipped with electron dispersive x-ray spectra confirms the formation of near stoichiometric $Zn_xSn_{1-x}O_2$ nanorods of diameter ~10 nm. X-ray diffraction analysis revealed the rutile structure, except for x=0.07, which may have a small part of $Zn_2SnO_4$ as a secondary phase.

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Fabrication and Characterization of FET Device Using ZnO Nanowires (ZnO 나노와이어를 이용한 FET 소자 제작 및 특성 평가)

  • Kim, K.W.;Oh, W.S.;Jang, G.E.;Park, D.W.;Lee, J.O.;Kim, B.S.
    • Journal of the Korean institute of surface engineering
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    • v.41 no.1
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    • pp.12-15
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    • 2008
  • The zinc oxide(ZnO) nanowires were deposited on Si(001) substrates by thermal chemical vapour deposition without any catalysts. SEM data suggested that the grown nanostructures were the well-aligned ZnO single crystals with preferential orientation. Back-gate ZnO nanowire field effect transistors(FET) were successfully fabricated using a photolithography process. The fabricated nanowire FET exhibits good contact between the ZnO nonowire and Au metal electrodes. Based on I-V characteristics it was found out that the ZnO nanowire revealed a characteristic of n-type field effect transistor. The drain current increases with increasing drain voltage, and the slopes of the $I_{ds}-V_{ds}$ curves are dependent on the gate voltage.

ZnO Nanorod Array as an Efficient Photoanode for Photoelectrochemical Water Oxidation (광전기화학적 물 산화용 산화아연 나노막대 광양극의 합성 및 특성평가)

  • Park, Jong-Hyun;Kim, Hyojin
    • Korean Journal of Materials Research
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    • v.30 no.5
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    • pp.239-245
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    • 2020
  • Synthesizing one-dimensional nanostructures of oxide semiconductors is a promising approach to fabricate highefficiency photoelectrodes for hydrogen production from photoelectrochemical (PEC) water splitting. In this work, vertically aligned zinc oxide (ZnO) nanorod arrays are successfully synthesized on fluorine-doped-tin-oxide (FTO) coated glass substrate via seed-mediated hydrothermal synthesis method with the use of a ZnO nanoparticle seed layer, which is formed by thermally oxidizing a sputtered Zn metal thin film. The structural, optical and PEC properties of the ZnO nanorod arrays synthesized at varying levels of Zn sputtering power are examined to reveal that the optimum ZnO nanorod array can be obtained at a sputtering power of 20 W. The photocurrent density and the optimal photocurrent conversion efficiency obtained for the optimum ZnO nanorod array photoanode are 0.13 mA/㎠ and 0.49 %, respectively, at a potential of 0.85 V vs. RHE. These results provide a promising avenue to fabricating earth-abundant ZnO-based photoanodes for PEC water oxidation using facile hydrothermal synthesis.

NO Sensing Characteristics of ZnO Nanorod Prepared by Ultrasound Radiation Method (초음파 처리에 의해 합성된 ZnO 나노로드 센서의 일산화질소 가스에 대한 감응 특성)

  • Park, Sun-Min;Zhang, Shao-Lin;Huh, Jeung-Soo
    • Korean Journal of Materials Research
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    • v.18 no.7
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    • pp.367-372
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    • 2008
  • ZnO nanorod gas sensors were prepared by an ultrasound radiation method and their gas sensing properties were investigated for NO gas. For this procedure, 0.01, 0.005 and 0.001M of zinc nitrate hydrate [$Zn(NO_3)_2\;{\cdot}\;6H_2O$] and hexamethyleneteramine [$C_6H_{12}N_4$] aqueous solutions were prepared and then the solution was irradiated with high intensity ultrasound for 1 h. The lengths of ZnO nanorods ranged from 200 nm to 500 nm with diameters ranging from 40 nm to 80 nm. The size of the ZnO nanorods could be controlled by the concentration of solution. The sensing characteristics of these nanostructures were investigated for three kinds of sensor. The properties of the sensors were influenced by the morphology of the nanorods.

ZnO Nanostructures for Photovoltaic Applications

  • Im, Dong-Chan;Lee, Gyu-Hwan;Jeong, Yong-Su;Park, Mi-Yeong
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2009.05a
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    • pp.6.1-6.1
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    • 2009
  • 최근 신 재생 에너지에 대한 관심이 고조되고 있으며 특히 태양전지는 차세대 대체에너지로 많은 연구 개발이 이루어지고 있다. 현재 태양전지 시장은 벌크실리콘 태양전지가 주를 이루고 있으나, 박막형, 유기물, 염료감응형 등 다양한 차세대 태양전지가 개발되고 있다. 차세대 태양전지는 글래스나 폴리머 기판위에 형성된 전극을 바탕으로 하여 다양한 형태의 태양전지가 형성되기 때문에 태양전지용 투명도전성 산화물 전극에 대한 중요성이 증가하고 있다. 예를 들어 실리콘 박막형 태양전지의 경우 수소 플라즈마 분위기 안정성 때문에 ZnO:Al 전극이 개발, 적용되고 있다. 이밖에도 ZnO는 나노입자, 나노로드 등의 다양한 형태를 기반으로 유기물 및 염료감응형 태양전지 전극으로 적용되고 있다. 본 연구에서는 전기화학적 방법을 이용해 나노입자, 나노로드, 나노 sheet 등 다양한 형태의 ZnO 나노구조를 형성한 후, 태양전지 적용을 위한 전기적, 광학적 특성을 분석하였다. 3차원 형태의 ZnO sheet 전극은 90% @ 550 nm 가 넘는 우수한 광특성 (Haze value)을 보였으며, 염료감응형 태양전지에 적용되었을 경우 2차원 형태의 ZnO 전극에 비해 Jsc 값이 2.5배 이상 향상되었다.

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Microfabrication of Thin Film Sensor with Metal Oxide Nanostructure and Their Gas Sensing Properties (금속 산화물 나노구조형 마이크로 박막 센서의 제작 및 가스 응답 특성)

  • Kang Bong-Hwi;Lee Sang-Rok;Song Kap-Duk;Joo Byung-Su;Lee Duk-Dong
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.43 no.8 s.350
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    • pp.13-18
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    • 2006
  • [ $SnO_2$ ] and ZnO nanostructures were grown on the surface of thin film by heat treatment of metal Sn, Zn under Ar gas flow and $O_2$ at atmospheric pressure, respectively. The sensitivity of the $SnO_2$ thin film device on which grown nanowires to CO gas(5,000 ppm) was 50 % at the operating temperature of $200^{\circ}C$. In case of using Pt as catalysts, the sensitivity was enhanced and operating temperature was reduced(73 % at $150^{\circ}C$ ). The sensitivity of the ZnO nanorods device using Cu as catalysts to NOx gas was 90 % at the operating temperature of $200^{\circ}C$. It was found that the sensitivity to CO and NOx gases for the device on which grown nanostructures was much higher than those for general thin film device.

Performance Enhancement of Nanogenerator Based on Surface Structure Modification of Semiconductor Nanostructures (반도체 나노구조 표면구조 제어를 통한 나노제너레이터 성능향상 기술 연구)

  • Nam, Gwang-Hui;Hasana, Md. Roqibul;Baek, Seong-Ho;Park, Il-Gyu
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2014.11a
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    • pp.95-96
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    • 2014
  • 본 논문에서는 수열합성법으로 성장된 ZnO 기반의 나노구조를 응용함으로써, 압전기반의 새로운 나노제너레이터 구조 및 성능향상에 관한 연구를 제시하고자한다. ZnO 나노구조는 원자층증착법을 적용하여 균일한 ZnO 나노박막 seed층을 성장하고, 이러한 seed층 위에 수열합성법을 통해 $90^{\circ}C$ 저온에서 ZnO 나노구조를 성장함으로써 이루어진다. 성능향상을 위해 다양한 종류 및 구조의 기판 적용을 통해 압전소자를 제작하였으며, 주기적인 스트레인의 적용을 통해 출력특성을 측정하였다. 또한 유연성 나노제너레이터의 제작을 위해 Graphene기반의 전극구조를 적용하였으며, 이를 통해 유연성 나노제너레이터 소자로부터 나노압전특성을 제어할 수 있었다. 특히 나노압전소자의 성능향상을 위해 기판의 표면미세구조를 조절하여 표면적을 넓혀줌으로써 압전소자의 출력전압특성을 향상하였으며, 이러한 메커니즘을 구조적, 성분 분석 및 광학적 특성분석을 통해 규명하였다.

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Synthesis, Structural Characterization, and Catalytic Activity of Flower Like ZnO Nanostructures

  • Ramachandran, K.;Kumar, G. Gnana;Kim, Ae Rhan;Yoo, Dong Jin
    • Bulletin of the Korean Chemical Society
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    • v.35 no.4
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    • pp.1091-1097
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    • 2014
  • Tageteserecta flower like zinc oxide nanostructures composed of hexagonal nanorods were synthesized via sonochemical method at room temperature. The synthesized nanomaterials exhibited wurtzite hexagonal phase structure with the single crystalline nature. The diameter of the individual nanorods that constitute the flower shaped zinc oxide structures is in the range of 120-160 nm. The sonication time effectively determined the morphological properties of the prepared materials. The catalytic activity of prepared zinc oxide nanostructures towards N-formylation reactions were evaluated without any surface modification and the nanostructures exhibited good reaction yield with the prompt recyclability behavior.

Facile in situ Formation of CuO/ZnO p-n Heterojunction for Improved H2S-sensing Applications

  • Shanmugasundaram, Arunkumar;Kim, Dong-Su;Hou, Tian Feng;Lee, Dong Weon
    • Journal of Sensor Science and Technology
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    • v.29 no.3
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    • pp.156-161
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    • 2020
  • In this study, hierarchical mesoporous CuO spheres, ZnO flowers, and heterojunction CuO/ZnO nanostructures were fabricated via a facile hydrothermal method. The as-prepared materials were characterized in detail using various analytical methods such as powder X-ray diffraction, micro Raman spectroscopy, X-ray photoelectron spectroscopy, field-emission scanning electron microscopy, and transmission electron microscopy. The obtained results are consistent with each other. The H2S-sensing characteristics of the sensors fabricated based on the CuO spheres, ZnO flowers, and CuO/ZnO heterojunction were investigated at different temperatures and gas concentrations. The sensor based on ZnO flowers showed a maximum response of ~141 at 225 ℃. The sensor based on CuO spheres exhibited a maximum response of 218 at 175 ℃, whereas the sensor based on the CuO/ZnO nano-heterostructure composite showed a maximum response of 344 at 150 ℃. The detection limit (DL) of the sensor based on the CuO/ZnO heterojunction was ~120 ppb at 150 ℃. The CuO/ZnO sensor showed the maximum response to H2S compared with other interfering gases such as ethanol, methanol, and CO, indicating its high selectivity.