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首页> 外文期刊>Sensors and Actuators >Hybrid nanoarchitecturing of hierarchical zinc oxide wool-ball-like nanostructures with multi-walled carbon nanotubes for achieving sensitive and selective detection of sulfur dioxide
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Hybrid nanoarchitecturing of hierarchical zinc oxide wool-ball-like nanostructures with multi-walled carbon nanotubes for achieving sensitive and selective detection of sulfur dioxide

机译:多层氧化锌毛球状纳米结构与多壁碳纳米管的混合纳米结构,用于实现对二氧化硫的灵敏和选择性检测

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摘要

This work reports a facile glycerol-assisted solvothermal method for synthesizing hierarchical three-dimensional (3D) wool-ball-like zinc oxide (ZnO) nanostructures and their subsequent modifications with multi-walled carbon nanotubes (MWCNTs) as modifiers for achieving sensitive and selective detection of toxic sulfur dioxide (SO2) gas. Structurally, the as-synthesized 3D wool-ball-like ZnO is assembled of two-dimensional (2D) plate-like structures, which themselves are arranged by numerous small nanoparticles. Furthermore, in this work we observed an interesting new phenomenon in which when a high concentration of MWCNTs is introduced, many small nanorods grew on the surface of the plate-like structures which assemble the 3D wool-ball-like ZnO nanostructures. When evaluated for SO2detection, the ZnO/MWCNTs (10:1) composite (ZnO:MWCNTs = 10:1) shows a high response of 220.8 to 70 ppm of SO2gas (approximately three times higher than the response of pure wool-ball-like ZnO) at an optimum operating temperature of 300 °C. Additionally, the composite also displays good stability and selectivity to SO2with the response to 50 ppm of SO2being 7–14 times higher than the responses to other tested gases at a similar concentration. The excellent sensing performance of the wool-ball-like ZnO/MWCNTs (10:1) composite is mainly attributed to: (i) the formation ofp-nheterojunctions at the ZnO/MWCNTs interfaces, which greatly enhance the resistance changes upon exposure to SO2gas and (ii) the increased amount of adsorption sites for O2and SO2gas molecules owing to the larger surface area of the composite and defects sites generated by the functionalization process of MWCNTs.
机译:这项工作报告了一种简便的甘油辅助溶剂热法,用于合成分层的三维(3D)羊毛球状氧化锌(ZnO)纳米结构及其随后的修饰,以多壁碳纳米管(MWCNT)为修饰剂,以实现敏感和选择性检测有毒的二氧化硫(SO2)气体。在结构上,合成后的3D羊毛球状ZnO由二维(2D)板状结构组装而成,这些结构本身由许多小的纳米颗粒排列而成。此外,在这项工作中,我们观察到一个有趣的新现象,当引入高浓度的MWCNT时,许多小的纳米棒生长在组装3D羊毛球状ZnO纳米结构的板状结构的表面上。当对SO2的检测进行评估时,ZnO / MWCNTs(10:1)复合材料(ZnO:MWCNTs == 10:1)表现出220.8至70 SOppm的SO2气体的高响应度(大约是纯羊毛球状响应的三倍) ZnO)的最佳工作温度为300C。此外,该复合材料还对SO2表现出良好的稳定性和选择性,对50 ppm的SO2的响应比对类似浓度的其他测试气体的响应高7-14倍。羊毛球状ZnO / MWCNTs(10:1)复合材料的出色传感性能主要归因于:(i)在ZnO / MWCNTs界面处形成对-异质结,这大大增强了暴露于SO2气体时的电阻变化(ii)由于复合材料的较大表面积和MWCNTs的官能化过程产生的缺陷部位,导致O2和SO2气体分子的吸附部位数量增加。

著录项

  • 来源
    《Sensors and Actuators》 |2018年第5期|241-251|共11页
  • 作者单位

    Advanced Functional Materials (AFM) Laboratory, Engineering Physics, Institute of Technology Bandung,Welding Engineering Department, Institute of Technology Science Bandung;

    World Premier International (WPI) Research Center for Materials Nanoarchitectonics (MANA), National Institute for Materials Science (NIMS);

    Advanced Functional Materials (AFM) Laboratory, Engineering Physics, Institute of Technology Bandung,Research Center for Nanosciences and Nanotechnology (RCNN), Institute of Technology Bandung;

    Advanced Functional Materials (AFM) Laboratory, Engineering Physics, Institute of Technology Bandung,Research Center for Nanosciences and Nanotechnology (RCNN), Institute of Technology Bandung;

    Research Center for Nanosciences and Nanotechnology (RCNN), Institute of Technology Bandung;

    World Premier International (WPI) Research Center for Materials Nanoarchitectonics (MANA), National Institute for Materials Science (NIMS);

    Department of Plant & Environmental New Resources, Kyung Hee University;

    World Premier International (WPI) Research Center for Materials Nanoarchitectonics (MANA), National Institute for Materials Science (NIMS),Department of Plant & Environmental New Resources, Kyung Hee University,Australian Institute of Innovative Materials (AIIM), University of Wollongong, North Wollongong,School of Chemical Engineering & Australian Institute for Bioengineering and Nanotechnology (AIBN), The University of Queensland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Zinc oxide; Porous metal oxides; Sulfur dioxide sensor; Gas-sensing; Carbon nanotubes; Metal oxide nanocomposites;

    机译:氧化锌;多孔金属氧化物;二氧化硫传感器;气敏;碳纳米管;金属氧化物纳米复合材料;

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