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A miniaturized catalytic gas sensor for hydrogen detection based on stabilized nanoparticles as catalytic layer

机译:基于稳定的纳米颗粒作为催化层的用于氢气检测的小型催化气体传感器

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摘要

Micro-technologically based catalytic gas sensors offer great advantages regarding sensitivity, power consumption and response time, especially in connection with a porous catalyst layer, which however often provides no sufficient long-term stability. This paper presents a miniaturized catalytic gas sensor for hydrogen detection based on colloidally prepared platinum nanoparticles as a catalytic layer. Compared to conventional sensors, the sensitivity of the catalytic layer is increased while the amount of catalytic material is decreased, due to the high surface of nanoparticles and the direct contact to the sensor. Because of the susceptibility of the nanoparticles to thermally induced sintering, an approach is adopted where the nanoparticles are embedded in an organic network, consisting of stabilizing surfactants adsorbed on the nanoparticle's surface. Agglomeration is reduced and the adhesion to the substrate is improved so that a highly improved stability compared to sensors fabricated with nanoparticles without surfactants is observed. Additionally, the sensor design allows a precise control of the temperature of the catalyst, which also contributes to the stability by keeping the temperature constant. Thermal loading effects are avoided. A sensitivity of up to 2.5 mV/100ppm was observed.
机译:基于微技术的催化气体传感器在灵敏度,功耗和响应时间方面具有很大的优势,特别是在与多孔催化剂层连接时,然而,这种催化剂常常无法提供足够的长期稳定性。本文提出了一种基于胶体制备的铂纳米颗粒作为催化层的用于氢气检测的小型催化气体传感器。与常规传感器相比,由于纳米颗粒的高表面和与传感器的直接接触,催化层的灵敏度提高了,而催化材料的数量却减少了。由于纳米粒子对热诱导烧结的敏感性,因此采用了一种方法,其中将纳米粒子嵌入有机网络中,该网络由稳定的表面活性剂吸附在纳米粒子的表面上组成。与用没有表面活性剂的纳米颗粒制造的传感器相比,减少了团聚并改善了对基材的粘附性,从而大大提高了稳定性。另外,传感器设计允许精确控制催化剂的温度,这也通过保持温度恒定而有助于稳定性。避免了热负荷效应。观察到高达2.5 mV / 100ppm的灵敏度。

著录项

  • 来源
    《Sensors and Actuators》 |2013年第10期|420-425|共6页
  • 作者单位

    IMSAS (Institute for Microsensors. -actuators and -systems), University of Bremen, Otto-Hahn-Allee NW1,28359 Bremen, Germany;

    IAPC (Institute of Applied and Physical Chemistry), University of Bremen, Leobener Str. NW2,28359 Bremen, Germany;

    IAPC (Institute of Applied and Physical Chemistry), University of Bremen, Leobener Str. NW2,28359 Bremen, Germany;

    IAPC (Institute of Applied and Physical Chemistry), University of Bremen, Leobener Str. NW2,28359 Bremen, Germany;

    IMSAS (Institute for Microsensors. -actuators and -systems), University of Bremen, Otto-Hahn-Allee NW1,28359 Bremen, Germany;

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

    Catalytic gas sensor; Platinum nanoparticles; Functionalization; High sensitivity; Fast response; Stability;

    机译:催化气体传感器;铂纳米粒子;功能化;高灵敏度;反应快;稳定性;

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