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首页> 外文期刊>Sensors and Actuators >Metal-organic framework-derived porous SnO_2 nanosheets with grain sizes comparable to Debye length for formaldehyde detection with high response and low detection limit
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Metal-organic framework-derived porous SnO_2 nanosheets with grain sizes comparable to Debye length for formaldehyde detection with high response and low detection limit

机译:金属有机骨架衍生的多孔SnO_2纳米型颗粒尺寸可与甲醛检测的德细长度相当,具有高响应和低检测极限

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摘要

The development of metal oxide semiconductors-based gas sensors that can simultaneously achieve high response and low detection limit towards formaldehyde (HCHO) remains a great challenge so far. In this work, we present the formation of porous SnO_2 nanosheets via direct calcination of a Sn-based metal-organic framework that was prepared via a facile wet chemistry method with deionized water as solvent at 80 °C. The porous SnO_2 nanosheets are found to be constructed by the interconnection of ultrafine nanoparticles with sizes of 4-9 run, which is comparable to the Debye length of SnO_2. The gas sensor based on the porous SnO_2 nanosheets demonstrate a broad detection range towards HCHO (0.05-500 ppm), a low operating temperature (140 °C), very high response (540.8 to 50 ppm HCHO), extremely low detection limit (0.31 ppb), ideal selectivity, and outstanding reproducibility and durability. The excellent HCHO-sensing performance of the SnO_2 sensor could be attributed to the high specific surface area (125.92 m~2/g) of the porous SnO_2 nanosheets, the ultrafine sizes of the SnO_2 nanoparticles, and the presence of abundant of mesopores within the nanosheets. The porous SnO_2 nanosheets with excellent HCHO-sensing characteristics may find widespread applications in fabricating gas sensors for detecting ppb-level HCHO.
机译:基于金属氧化物半导体的气体传感器的开发可以同时实现高响应和对甲醛(HCHO)的低检测限仍然是一个巨大的挑战。在这项工作中,我们通过直接煅烧了多孔SnO_2纳米片的形成,所述SN基金属 - 有机骨架,所述SN基金属骨架通过容易湿化学方法制备,其在80℃下作为溶剂作为溶剂。发现多孔SnO_2纳米片被互连的超细纳米颗粒的互连构成,其尺寸为4-9次,这与SnO_2的德细长度相当。基于多孔SnO_2纳米片的气体传感器证明了朝向HCHO(0.05-500ppm)的宽检测范围,低操作温度(140℃),非常高的响应(540.8至50ppm HCHO),极低的检测极限(0.31 PPB),理想的选择性和出色的再现性和耐用性。 SnO_2传感器的优异HCho感测性能可归因于多孔SnO_2纳米片的高比表面积(125.92m〜2 / g),SnO_2纳米颗粒的超细尺寸,以及在其中内部的含量大量的存在nanosheets。具有优异的HCho感测特性的多孔SnO_2纳米片可以在制造用于检测PPB级Hcho的气体传感器中找到广泛的应用。

著录项

  • 来源
    《Sensors and Actuators》 |2021年第11期|130599.1-130599.10|共10页
  • 作者单位

    Institute of Marine Materials Science and Engineering Shanghai Maritime University Shanghai 201306 China;

    Shanghai Key Laboratory of Magnetic Resonance School of Physics and Electronic Science East China Normal University Shanghai 200241 China;

    Institute of Marine Materials Science and Engineering Shanghai Maritime University Shanghai 201306 China;

    College of Logistics Engineering Shanghai Maritime University Shanghai 201306 China;

    Shanghai Key Laboratory of Magnetic Resonance School of Physics and Electronic Science East China Normal University Shanghai 200241 China;

    Institute of Marine Materials Science and Engineering Shanghai Maritime University Shanghai 201306 China;

    College of Logistics Engineering Shanghai Maritime University Shanghai 201306 China;

    College of Logistics Engineering Shanghai Maritime University Shanghai 201306 China;

    College of Logistics Engineering Shanghai Maritime University Shanghai 201306 China;

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

    Metal-organic framework; SnO_2 nanosheets; Mesopores; Gas sensor; Formaldehyde;

    机译:金属 - 有机框架;sno_2 nanosheets;中孔;气体传感器;甲醛;

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