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首页> 外文期刊>Sensors and Actuators >Ultrahigh sensitivity and surface mechanism of gas sensing process in composite material of combining In_2O_3 with metal-organic frameworks derived Co_3O_4
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Ultrahigh sensitivity and surface mechanism of gas sensing process in composite material of combining In_2O_3 with metal-organic frameworks derived Co_3O_4

机译:用金属 - 有机框架与金属 - 有机框架组合的复合材料中气体传感过程的超高敏感性和表面机制。衍生CO_3O_4

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摘要

The improvement of gas sensor sensitivity and the investigation of the gas sensing mechanism have always been hot issues in the field of gas sensors. It was expected to improve the gas-sensing properties of the material by taking advantage of the large specific surface area and ultrahigh porosities of metal organic frameworks (MOFs) and the advantages of metal oxide semiconductor CMOS) p-n heterojunction in this study. The composite material of combining ZIF-67 derived Co_3O_4 with In_2O_3 were synthesized based on micro-flower In_2O_3 and polyhedral ZIF-67 materials. The systematic ethanol detection demonstrated that sensors based on the material had achieved significant progress in sensitivity and selectivity. An ultra-high sensitivity was achieved with the response value of 5585 to 100 ppm ethanol at 280 °C, and the response time was only 8 s. The heterojunction effect and abundant active sites could be the main reasons for the enhanced performance based on the gas sensing behavior and structural characterization. The gas sensing mechanism of oxygen vacancy was firstly confirmed by the strength rule of In-O bond with the assistance of operando spectroscopy.
机译:气体传感器灵敏度的提高以及气体传感机制的调查一直是气体传感器领域的热问题。预计通过利用本研究中的金属有机框架(MOF)的大特定表面积和超高孔隙率和优于金属氧化物半导体CMOS的优点,预期通过采用大型比表面积和优于本研究的优点来改善材料的气体传感性能。基于微花IN_2O_3和多面体ZIF-67材料合成了与IN_2O_3合成的ZIF-67衍生的CO_3O_4的复合材料。系统乙醇检测证明了基于材料的传感器在敏感性和选择性方面取得了显着进展。在280℃下响应值为5585至100ppm乙醇的响应值,响应时间仅为8秒,实现超高敏感性。异质结效应和丰富的活性网站可能是基于气体传感行为和结构表征增强性能的主要原因。首先通过对Outmando光谱的辅助,首先通过IN-O键的强度规律证实了氧空位的气体传感机制。

著录项

  • 来源
    《Sensors and Actuators 》 |2021年第8期| 129990.1-129990.11| 共11页
  • 作者单位

    State Key Laboratory of Chemical Resources Engineering Beijing University of Chemical Technology Beijing 100029 China;

    State Key Laboratory of Chemical Resources Engineering Beijing University of Chemical Technology Beijing 100029 China;

    State Key Laboratory of Chemical Resources Engineering Beijing University of Chemical Technology Beijing 100029 China;

    State Key Laboratory of Chemical Resources Engineering Beijing University of Chemical Technology Beijing 100029 China;

    State Key Laboratory of Chemical Resources Engineering Beijing University of Chemical Technology Beijing 100029 China;

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

    ZIF-67; Co_3O_4/In_2O_3; Gas sensor; Heterojunction; Oxygen vacancy mechanism;

    机译:ZIF-67;co_3o_4 / in_2o_3;气体传感器;异结;氧气空位机制;

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