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首页> 外文期刊>Sensors and Actuators >Polypyrrole shell (nanoparticles)-functionalized silicon nanowires array with enhanced NH_3-sensing response
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Polypyrrole shell (nanoparticles)-functionalized silicon nanowires array with enhanced NH_3-sensing response

机译:具有增强的NH_3感应响应的聚吡咯壳(纳米粒子)功能化的硅纳米线阵列

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摘要

HighlightsPPy shell-/PPy nanoparticle-functionalized SiNWs for gas-sensing were reported.A dual-MACE process was first developed to facilitate modification on whole nanowire.Comparative study on functionalization effect of hetero-film/-NPs was performed.PPy shell functionalization can enhance NH3-sensing response remarkably.Possible mechanism for enhanced response of PPy-shell compared to PPy-NPs was analyzed.AbstractConducting polymer of polypyrrole (PPy) was employed to functionalize the ordered silicon nanowire (SiNWs) with the aim to enhance gas-sensing response at room temperature (RT). A dual-MACE process was first developed to form loose SiNWs (LNWs) array facilitating uniform attachment of PPy on whole nanowire surface. The LNWs array functionalized with continuous PPy ultrathin film and discrete PPy nanoparticles, i.e., PPy-shell@LNWs and PPy-NPs@LNWs, were prepared respectively via vapor chemical polymerization (VCP) and liquid chemical polymerization (LCP) of pyrrole monomer (Py). Comparative investigations on the NH3-sensing properties of the pristine SiNWs before and after dual-MACE treatment, and PPy-functionalized SiNWs of PPy-shell@LNWs and PPy-NPs@LNWs were carried out at RT. It was found that PPy functionalization enhances the NH3-sensing response of SiNWs-based sensors effectively. Formation of continuous PPy shell film is further found to result in more pronounced response enhancement when compared to the modification by discrete PPy NPs. The PPy-shell@LNWs and PPy-NPs@LNWs respectively exhibit about 27 and 6 times response enhancement to 10ppm NH3gas compared to the pristine one. The underlying NH3-sensing mechanism for the PPy-functionalized SiNWs, especially for the remarkable response enhancement of PPy-shell@SiNWs was demonstrated.
机译: 突出显示 已报道了用于气敏的PPy壳/ PPy纳米粒子功能化的SiNW。 首先开发了双重MACE工艺来促进整个纳米线上的修饰。 对异质膜/ -NPs的功能化作用进行了比较研究。 PPy shell功能化可以显着增强NH 3 的感知响应。 分析了与PPy-NP相比PPy-shell增强响应的可能机制。 摘要 3 传感特性的比较研究,以及PPy-shell @ LNWs和PPy的PPy官能化SiNW -NPs @ LNWs在室温下进行。发现PPy功能化可有效增强基于SiNWs的传感器的NH 3 传感响应。与离散PPy NPs的修饰相比,进一步发现形成连续的PPy壳膜可导致更明显的响应增强。与原始化合物相比,PPy-shell @ LNWs和PPy-NPs @ LNWs对10ppm NH 3 气体的响应增强分别约为27倍和6倍。演示了用于PPy功能化的SiNW的潜在NH 3 感应机制,尤其是对于PPy-shell @ SiNWs的显着响应增强。

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  • 来源
    《Sensors and Actuators》 |2018年第4期|246-254|共9页
  • 作者单位

    School of Microelectronics, Tianjin University,Tianjin Key Laboratory of Imaging and Sensing Microelectronic Technology, Tianjin University,Key Laboratory for Advanced Ceramics and Machining Technology, Ministry of Education, School of Materials Science and Engineering, Tianjin University;

    School of Microelectronics, Tianjin University;

    School of Microelectronics, Tianjin University;

    School of Microelectronics, Tianjin University;

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

    Silicon nanowires; Gas sensor; Polypyrrole; Functionalization; Metal-assisted chemical etching;

    机译:硅纳米线;气体传感器;聚吡咯;功能化;金属辅助化学刻蚀;

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