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Nanoenabled microelectromechanical sensor for volatile organic chemical detection

机译:纳米级微机电传感器,用于挥发性有机化学物质检测

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摘要

A nanoenabled gravimetric chemical sensor prototype based on the large scale integration of single-stranded DNA (ss-DNA) decorated single-walled carbon nanotubes (SWNTs) as nanofunctionalization layer for aluminum nitride contour-mode resonant microelectromechanical (MEM) gravimetric sensors has been demonstrated. The capability of two distinct single strands of DNA bound to SWNTs to enhance differently the adsorption of volatile organic compounds such as dinitroluene (simulant for explosive vapor) and dymethyl-methylphosphonate (simulant for nerve agent sarin) has been verified experimentally. Different levels of sensitivity (17.3 and 28 KHz μm~2/fg) due to separate frequencies of operation (287 and 450 MHz) on the same die have also been shown to prove the large dynamic range of sensitivity attainable with the sensor. The adsorption process in the ss-DNA decorated SWNTs does not occur in the bulk of the material, but solely involves the surface, which permits to achieve 50% recovery in less than 29 s.
机译:展示了一种基于纳米的重量化学传感器原型,该原型基于单链DNA(ss-DNA)装饰的单壁碳纳米管(SWNT)的大规模集成,作为氮化铝轮廓模式共振微机电(MEM)重量传感器的纳米功能化层。 。已通过实验验证了与SWNT结合的两条不同的DNA单链能够不同地增强挥发性有机化合物(如二硝基甲苯(爆炸性气体的模拟物)和二甲基甲基膦酸酯(神经性沙林的模拟物))的吸附能力。还显示了由于在同一芯片上使用不同的工作频率(287和450 MHz)而导致的不同灵敏度水平(17.3和28 KHzμm〜2 / fg)证明了传感器可以实现较大的灵敏度动态范围。 ss-DNA修饰的单壁碳纳米管的吸附过程不会在材料的大部分中发生,而仅涉及表面,这可在不到29 s的时间内实现50%的回收率。

著录项

  • 来源
    《Applied Physicsletters》 |2009年第22期|199-201|共3页
  • 作者单位

    Department of Electrical and Systems Engineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA;

    Department of Electrical and Systems Engineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA;

    Department of Physics and Astronomy, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA;

    Department of Physics and Astronomy, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA;

    Department of Electrical and Systems Engineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:19:37

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