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首页> 外文期刊>Nanotechnology >Nitrogen dioxide sensing based on multiple-morphology cuprous oxide mixed structures anchored on reduced graphene oxide nanosheets at room temperature
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Nitrogen dioxide sensing based on multiple-morphology cuprous oxide mixed structures anchored on reduced graphene oxide nanosheets at room temperature

机译:基于多相形态学的二氧化氮传感,锚定石墨烯氧化物纳米型室温下的氧化亚氧化物混合结构

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摘要

Sensitive detection of trace nitrogen dioxide (NO2) gas at room temperature is of urgent necessity in the fields of healthcare and environment monitoring. To achieve this goal, we report on a porous composite film featuring reduced graphene oxide (rGO) nanosheets as the template platform of nanostructured cuprous oxide (Cu2O) nanowires and nanoparticles via a hydrothermal method. The sensor performance was investigated in terms of sensing response, optimal operation temperature, repeatability, long-term stability, selectivity and humidity effect on NO2 sensing. The sensor response achieved 0.66 towards 50 ppb NO2 gas with a full recovery at room temperature (25 degrees C +/- 2 degrees C), which was among the best cases of Cu2O-related NO2 detection concerning sensor response and operation temperature. Moreover, a modest repeatability, stability, selectivity as well as a negligible humidity effect on NO2 sensing were exhibited. A mass of interspaces existing within nanostructured composites as well as the synergistic effect between rGO and Cu2O materials endowed the sensing layer with favorable gas accessibility and sufficient gas-solid interaction. Simultaneously, highly conductive rGO nanosheets facilitated an effective electron transfer and collection. In brief, the asprepared rGO/Cu2O sensors showed a competitive room temperature detection capability for ppb-level NO2 gas, providing a vast potential in the future applications such as the real-time monitoring of ultralow emission.
机译:在室温下对微量二氧化氮(NO2)气体的敏感性检测是医疗保健和环境监测领域的迫切需要。为了实现这一目标,我们报告了多孔复合薄膜,其具有通过水热法作为纳米结构氧化亚氧化物(Cu2O)纳米线和纳米颗粒的模板平台的氧化石墨氧化物(RGO)纳米片。在感测响应,最佳操作温度,可重复性,长期稳定性,选择性和湿度对NO2感测的方面进行了研究了传感器性能。传感器响应在室温(25摄氏度C +/- 2℃)的完全恢复之前达到0.66升至50ppb No2气体,这是Cu2O相关No2检测的最佳情况下的传感器响应和操作温度。此外,表现出适度的可重复性,稳定性,选择性以及No2感测的可忽略不计的湿度效应。存在于纳米结构复合材料中的一系列间隙以及RGO和Cu2O材料之间的协同效果赋予传感层,具有良好的气体可访问性和足够的气体固体相互作用。同时,高导电RGO纳米液促进了有效的电子转移和收集。简而言之,asprepared的Rgo / Cu2o传感器对PPB级No2气体显示出竞争性的室温检测能力,在未来的应用中提供了巨大的潜力,例如超级发射的实时监测。

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  • 来源
    《Nanotechnology 》 |2019年第45期| 共10页
  • 作者单位

    Chongqing Univ Coll Optoelect Engn Key Lab Optoelect Technol &

    Syst Minist Educ China Chongqing Peoples R China;

    Chongqing Univ Coll Optoelect Engn Key Lab Optoelect Technol &

    Syst Minist Educ China Chongqing Peoples R China;

    Chongqing Univ Coll Optoelect Engn Key Lab Optoelect Technol &

    Syst Minist Educ China Chongqing Peoples R China;

    Chongqing Univ Coll Optoelect Engn Key Lab Optoelect Technol &

    Syst Minist Educ China Chongqing Peoples R China;

    Chongqing Univ Coll Optoelect Engn Key Lab Optoelect Technol &

    Syst Minist Educ China Chongqing Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料 ;
  • 关键词

    gas sensor; reduced graphene oxide; cuprous oxide; nitrogen dioxide; mixed structures; room temperature;

    机译:气体传感器;石墨烯氧化物。氧化亚铜;二氧化氮;混合结构;室温;

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