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首页> 外文期刊>IEEE sensors journal >Organic Surfactant Assisted Polypyrrole Materials as Effective Chemiresistive Gas Sensors for VOCs and Toxic Gas Detection
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Organic Surfactant Assisted Polypyrrole Materials as Effective Chemiresistive Gas Sensors for VOCs and Toxic Gas Detection

机译:有机表面活性剂辅助聚吡咯材料作为VOC和有毒气体检测的有效切削气体传感器

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摘要

Surfactant assisted PPy materials are explored as efficient gas sensors for VOCs and toxic gases in the present work. Polypyrrole nanostructures were prepared by chemical oxidative polymerization using various sulfonic acids as surfactants between 0-5 degrees C. The effect of sulfonyl group on PPy was confirmed by FT-IR spectrum analysis. Doping of sulfonic acid has a strong effect on morphology of polymer blends which displayed the amorphous, globular, cauliflower, flakes and compact sheet like structures observed in the surface morphology. The conductivity of doped PPy observed to be dependent on the nature of dopant and its doping level. The electrical conductivity was observed to enhance by an order in magnitude on the addition of organic surfactants from 0.1 to 2.0 M. The pristine PPy shows high % response of 93% and 70% only for NH3 and Cl-2 respectively. But different surfactant doped PPy were found to be highly sensitive for most of the VOCs and toxic gases which emerged as efficient sensor materials for fast response and recovery at the lowest level of 5 ppm.
机译:表面活性剂辅助PPY材料被探索为目前工作中的VOC和有毒气体的有效气体传感器。通过使用各种磺酸的化学氧化聚合在0〜5℃之间的表面活性剂中通过化学氧化聚合制备聚吡咯纳米结构。通过FT-IR光谱分析证实了磺酰基对PPY上的磺酰基的作用。磺酸的掺杂对聚合物共混物的形态具有很强的效果,其展示了在表面形态学中观察到的结构的无定形,球状,花椰菜,薄片和紧凑型片。掺杂PPY的电导率观察到依赖于掺杂剂及其掺杂水平的性质。观察到导电率以增加0.1-2.0M的有机表面活性剂的幅度上的顺序增强。原始PPY分别显示出NH 3和Cl-2的高效率为93%和70%。但是,发现不同的表面活性剂掺杂的PPY对于大多数VOC和有毒气体,这是高效的传感器材料的高度敏感性,以便在5ppm的最低级别的快速响应和恢复。

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