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Conducting polymer-inorganic nanocomposite-based gas sensors: a review

机译:进行聚合物 - 无机纳米复合材料的气体传感器:综述

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With the rapid development of conductive polymers, they have shown great potential in room-temperature chemical gas detection, as their electrical conductivity can be changed upon exposure to oxidative or reductive gas molecules at room temperature. However, due to their relatively low conductivity and high affinity toward volatile organic compounds and water molecules, they always exhibit low sensitivity, poor stability, and gas selectivity, which hinder their practical gas sensor applications. In addition, inorganic sensitive materials show totally different advantages in gas sensors, such as high sensitivity, fast response to low concentration analytes, high surface area, and versatile surface chemistry, which could complement the conducting polymers in terms of the sensing characteristics. It seems to be a win-win choice to combine inorganic sensitive materials with polymers for gas detection due to their synergistic effects, which has attracted extensive interests in gas-sensing applications. In this review, we summarize the recent development in polymer-inorganic nanocomposite based gas sensors. The roles of inorganic nanomaterials in improving the gas-sensing performances of conducting polymers are introduced and the progress of conducting polymer-inorganic nanocomposites including metal oxides, metal, carbon (carbon nanotube, graphene), and ternary composites are presented. Finally, a conclusion and a perspective in the field of gas sensors incorporating conducting polymer-inorganic nanocomposite are summarized.
机译:与导电聚合物的迅速发展,它们已经显示在室温化学气体检测巨大的潜力,因为它们的导电性可以在暴露于室温下被改变为氧化或还原气体分子。然而,由于其相对低的电导率和朝向挥发性有机化合物和水分子的高亲和力,他们总是表现出低灵敏度,稳定性差,和气体选择性,这妨碍它们的实际气体传感器应用。此外,无机敏感材料显示出气体传感器完全不同的优点,例如高灵敏度,向低浓度的分析物,高表面积的反应速度快,和通用的表面化学,其可以在所述感测特性方面补充导电聚合物。这似乎是一个双赢的选择结合有用于气体检测的聚合物无机敏感材料由于它们的协同作用,这已经吸引了在气体感测应用方面有广泛的兴趣。在这次审查中,我们总结了聚合物,无机系纳米复合材料的气体传感器的最新发展。无机纳米材料在提高导电聚合物的气敏表演角色进行了介绍和导电聚合物,无机纳米复合材料,包括金属氧化物,金属,碳(碳纳米管,石墨烯),和三元复合材料的进展呈现。最后,总结和在将导电聚合物 - 无机纳米复合气体传感器领域的立体进行了总结。

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