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Chemical Detection with a Single-Walled Carbon Nanotube Capacitor

机译:用单壁碳纳米管电容器进行化学检测

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We show that the capacitance of single-walled carbon nanotubes (SWNTs) is highly sensitive to a broad class of chemical vapors and that this transduction mechanism can form the basis for a fast, low-power sorption-based chemical sensor. In the presence of a dilute chemical vapor, molecular adsorbates are polarized by the fringing electric fields radiating from the surface of a SWNT electrode, which causes an increase in its capacitance. We use this effect to construct a high-performance chemical sensor by thinly coating the SWNTs with chemoselective materials that provide a large, class-specific gain to the capacitance response. Such SWNT chemicapacitors are fast, highly sensitive, and completely reversible.
机译:我们表明,单壁碳纳米管(SWNTs)的电容对一类广泛的化学蒸汽高度敏感,并且这种转导机制可以构成快速,低功耗,基于吸附的化学传感器的基础。在稀有化学蒸汽的存在下,分子吸附物被SWNT电极表面辐射的边缘电场极化,从而导致其电容增加。我们利用这种效应通过用化学选择性材料薄覆盖SWNTs来构建高性能的化学传感器,该化学选择材料可为电容响应提供较大的特定类别增益。这样的SWNT化学电抗器是快速,高度灵敏的并且是完全可逆的。

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