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Toward Large Arrays of Multiplex Functionalized Carbon Nanotube Sensors for Highly Sensitive and Selective Molecular Detection

机译:面向大型阵列的高灵敏度和选择性分子检测的多重功能化碳纳米管传感器

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摘要

Arrays of electrical devices with each comprising multiple single-walled carbon nanotubes (SWNT) bridging metal electrodes are obtained by chemical vapor deposition (CVD) of nanotubes across prefabricated electrode arrays. The ensemble of nanotubes in such a device collectively exhibits large electrical conductance changes under electrostatic gating, owing to the high percentage of semiconducting nanotubes. This leads to the fabrication of large arrays of low-noise electrical nanotube sensors with 100% yield for detecting gas molecules. Polymer functionalization is used to impart high sensitivity and selectivity to the sensors. Polyethyleneimine coating affords n-type nanotube devices capable of detecting NO_2 at less that 1 ppb (parts-per-billion) concentrations while being insensitive to NH_3. Coating Nafion (a polymeric perfluorinated sulfonic acid ionomer) on nanotubes blocks NO_2 and allows for selective sensing of NH_3. Multiplex functionalization of a nanotube sensor array is carried out by microspotting. Detection of molecules in a gas mixture is demonstrated with the multiplexed nanotube sensors.
机译:通过跨预制电极阵列对纳米管进行化学气相沉积(CVD),获得每个包含多个桥接金属电极的单壁碳纳米管(SWNT)的电气设备阵列。由于半导体纳米管的百分比高,这种装置中的纳米管集合在静电门控下共同表现出大的电导率变化。这导致制造出大阵列的低噪声电纳米管电传感器,其产率为100%,用于检测气体分子。聚合物功能化用于赋予传感器高灵敏度和选择性。聚乙烯亚胺涂层提供了n型纳米管器件,该器件能够以小于1 ppb(十亿分之一)的浓度检测NO_2,同时对NH_3不敏感。纳米管上的Nafion涂层(聚合全氟磺酸离聚物)可阻止NO_2并选择性检测NH_3。纳米管传感器阵列的多重功能化通过微点进行。用多路复用的纳米管传感器证明了对气体混合物中分子的检测。

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