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Novel catalytic gas sensors based on functionalized nanoparticle layers

机译:基于功能化纳米粒子层的新型催化气体传感器

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摘要

A thermal hydrogen gas sensor with a new type of catalytic layer based on films made of dodecylamine (DDA) capped platinum nanoparticles (DDA capped PtNPs) is presented here. These nanoparticles - prepared by a colloidal synthetic approach - offer, due to their ligand shell, a higher stability and a better adhesion to substrates and show lower agglomeration. Working principle of the sensing elements, consisting of two thermopiles and a central heater placed on a silicon nitride membrane, is the thermoelectric effect. By deposition of the ligand capped nanoparticles on the heated junction of one thermopile, hydrogen can be detected due to a change of the thermopile thermovoltage resulting from the reaction heat released during catalytic H_2 oxidation. A second thermopile was used as a reference element. In order to determine the influence of the organic ligands on the sensor activity, unprotected platinum nanoparticles (unprotected PtNPs) were also used as catalyst. Both approaches, the uncovered and functionalized platinum nanoparticles, have been characterized and exposed to different hydrogen concentrations. Results point towards a strong agglomeration of unprotected nanoparticles resulting in low output signals, whereas for the ligand capped nanoparticles a linear and reproducible output signal with a sensitivity up to 6.4 mV/1000 ppm hydrogen was observed.
机译:本文介绍了一种具有新型催化层的热氢气传感器,该传感器基于由十二烷基胺(DDA)覆盖的铂纳米颗粒(DDA覆盖的PtNP)制成的薄膜。这些通过胶体合成方法制备的纳米粒子,由于其配体壳的缘故,具有更高的稳定性和对基材的更好粘附性,并显示出较低的团聚。由两个热电堆和放置在氮化硅膜上的中央加热器组成的传感元件的工作原理是热电效应。通过将配体封端的纳米颗粒沉积在一个热电堆的加热结上,由于在催化H_2氧化过程中释放的反应热导致热电堆热电压发生变化,因此可以检测到氢。第二热电堆用作参考元件。为了确定有机配体对传感器活性的影响,未保护的铂纳米颗粒(未保护的PtNP)也用作催化剂。两种方法,未​​发现的和功能化的铂纳米颗粒,均已表征并暴露于不同的氢浓度。结果表明未保护的纳米颗粒会强烈团聚,导致输出信号低,而对于配体封端的纳米颗粒,观察到线性且可重现的输出信号,其灵敏度高达6.4 mV / 1000 ppm氢。

著录项

  • 来源
    《Sensors and Actuators》 |2012年第2012期|145-152|共8页
  • 作者单位

    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;

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

    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;

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

    Thermal hydrogen sensor; Pt nanoparticles; Nanostructured catalytic layer; Organic functionalization;

    机译:热氢传感器;铂纳米粒子;纳米结构催化层;有机功能化;

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