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Array of Chemosensitive Resistors with Composites of Gas Chromatography (GC) Materials and Carbon Black for Detection and Recognition of VOCs: A Basic Study

机译:气相色谱(GC)材料和炭黑复合化学敏感电阻器用于VOC的检测和识别:基础研究

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摘要

Mimicking the biological olfaction, large odor-sensor arrays can be used to acquire a broad range of chemical information, with a potentially high degree of redundancy, to allow for enhanced control over the sensitivity and selectivity of artificial olfaction systems. The arrays should consist of the largest possible number of individual sensing elements while being miniaturized. Chemosensitive resistors are one of the sensing platforms that have a potential to satisfy these two conditions. In this work we test viability of fabricating a 16-element chemosensitive resistor array for detection and recognition of volatile organic compounds (VOCs). The sensors were fabricated using blends of carbon black and gas chromatography (GC) stationary-phase materials preselected based on their sorption properties. Blends of the selected GC materials with carbon black particles were subsequently coated over chemosensitive resistor devices and the resulting sensors/arrays evaluated in exposure experiments against vapors of pyrrole, benzenal, nonanal, and 2-phenethylamine at 150, 300, 450, and 900 ppb. Responses of the fabricated 16-element array were stable and differed for each individual odorant sample, proving the blends of GC materials with carbon black particles can be effectively used for fabrication of large odor-sensing arrays based on chemosensitive resistors. The obtained results suggest that the proposed sensing devices could be effective in discriminating odor/vapor samples at the sub-ppm level.
机译:模仿生物嗅觉,大型气味传感器阵列可用于获取广泛的化学信息,并具有潜在的高度冗余性,从而可以增强对人工嗅觉系统的敏感性和选择性的控制。阵列在最小化的同时应包括尽可能多的单个感应元件。化学敏感电阻器是有潜力满足这两个条件的传感平台之一。在这项工作中,我们测试了制造用于检测和识别挥发性有机化合物(VOC)的16元素化学敏感电阻器阵列的可行性。传感器是使用炭黑和气相色谱(GC)固定相材料的混合物(根据其吸附特性预先选择的)制成的。随后将选定的GC材料与炭黑颗粒的混合物涂在化学敏感的电阻器上,并在暴露实验中针对150、300、450和900 ppb的吡咯,苯,壬醛和2-苯乙胺的蒸气评估所得的传感器/阵列。制作的16元素阵列的响应是稳定的,并且对于每个单独的加味剂样品都不同,这证明GC材料与炭黑颗粒的共混物可有效地用于制造基于化学敏感电阻器的大型气味感应阵列。获得的结果表明,所提出的传感装置可以有效地区分亚ppm级的气味/蒸气样品。

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