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首页> 外文期刊>Sensors and Actuators >Conductometric n-butanol gas sensor based on Tourmaline@ZnO hierarchical micro-nanostructures
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Conductometric n-butanol gas sensor based on Tourmaline@ZnO hierarchical micro-nanostructures

机译:基于电气石@ ZnO分层微纳米结构进行导电量正丁醇气体传感器

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摘要

The combinative strategy of metal oxide hybridized with other material to build up an effective heterojunction provides a promising route for the well development of the electronic devices. In this research, a conductometric sensor based on unique Tourmaline@ZnO core-shell structure for gas detection was successfully realized by synthesis of uniform precipitation and post-heat treatment. The structure, morphology, surface and energy band of the obtained sensing composites were successively characterized by XRD, SEM, TEM, BET, XPS and UV-vis analysis. The measuring results revealed a hierarchical grain-sheet-flower micro-nanostructure. Compared with pure ZnO, the Tourmaline@ZnO revealed larger specific surface area, richer oxygen vacancies and narrower band gap. Moreover, the gas sensing tests demonstrated that the core-shelled composites exhibited an excellent gas sensitivity to n-butanol, the sensor made from 1%Tourmaline@ZnO achieved the optimized performance as high as 120.84 to 100 ppm n-butanol that of 5 times more than other gases, additionally with the shortest response and recovery time. The introduction of tourmaline core exerted certain effects on the carrier migration and transmission performance, the micro-nanostructured Tourmaline@ZnO has confirmed to be a potential candidate for the detection of n-butanol and may play an important role in designing and fabricating highly efficient electronic sensors.
机译:用其他材料杂交的金属氧化物的组合策略以建立有效的异质结提供了用于电子设备的井开发的有希望的路线。在该研究中,通过合成均匀沉淀和后热处理成功地实现了一种基于独特的电气石@ ZnO核 - 壳结构的电导测量传感器。所获得的感测复合材料的结构,形态,表面和能带依次-VIS UV分析用XRD,SEM,TEM,BET,XPS和。测量结果揭示了一种层级粒状花卉微纳米结构。用纯的ZnO相比,电气石@的ZnO显示较大的比表面积,更丰富的氧空位和更窄的带隙。此外,气体传感试验证明芯壳复合材料表现出对正丁醇的优异的气体敏感性,由1%电气石@ ZnO制成的传感器实现优化的性能,高达120.84至100ppm N-丁醇的5次除了其他气体,另外具有最短的响应和恢复时间。引入电气石芯的施加在载体迁移和传输性能有一定的影响,所述微纳米结构电气石@ ZnO具有证实为用于检测正丁醇的潜在候选者,并且可以发挥设计的重要作用,并制造高效率的电子传感器。

著录项

  • 来源
    《Sensors and Actuators》 |2021年第6期|129793.1-129793.11|共11页
  • 作者单位

    School of Materials Science and Engineering Shanghai University 200072 China;

    School of Materials Science and Engineering Shanghai University 200072 China;

    School of Materials Science and Engineering Shanghai University 200072 China;

    School of Materials Science and Engineering Shanghai University 200072 China;

    Key Laboratory of Organic Compound Pollution Control Engineering Ministry of Education Shanghai University 200444 China;

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

    ZnO; Tourmaline; Core-shell nanostruncture; N-butanol; Gas sensor;

    机译:zno;电气石;核心壳纳米弹性;正丁醇;气体传感器;

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