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A nanostructured composite based on polyaniline and gold nanoparticles: Synthesis and gas sensing properties

机译:基于聚苯胺和金纳米颗粒的纳米结构复合材料:合成和气敏特性

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摘要

Nanostructured composite materials based on polyaniline (PANI) and gold nanoparticles have been prepared by means of an osmosis based method. Several morphologies have been obtained for the pristine nanoPANI and for nanoPANI-Au composite, ranging from amorphous to sponge-like and spherical shapes. On the basis of this morphological investigation, different materials with high surface area have been selected and tested as chemical interactive materials for room temperature gas and vapor sensing. The resistive sensor devices have been exposed to different vapor organic compounds (VOCs) of interest in the fields of environmental monitoring and biomedical applications, such as toluene, acetic acid, ethanol, methanol, acetonitrile, water, ammonia and nitrogen dioxide. The effect of doping with H_2SO_4 has been studied for both nanoPANI and nanoPANI-Au samples. In particular, nanoPANI-Au showed sensitivity to ammonia (up to 10 ppm) higher than that to other VOCs or interfering analytes. The facile preparation method and the improved properties achieved for the polyaniline-gold composite materials are significant in the nanomaterials field and have promise for applications in ammonia vapor monitoring.
机译:已经通过基于渗透的方法制备了基于聚苯胺(PANI)和金纳米颗粒的纳米结构复合材料。原始nanoPANI和nanoPANI-Au复合材料已获得多种形态,从无定形到海绵状和球形。基于这种形态学研究,已选择了具有高表面积的不同材料,并将其作为用于室温气体和蒸气感测的化学相互作用材料进行了测试。在环境监测和生物医学应用领域中,电阻式传感器设备已暴露于不同的气相有机化合物(VOC),例如甲苯,乙酸,乙醇,甲醇,乙腈,水,氨和二氧化氮。对nanoPANI和nanoPANI-Au样品都研究了H_2SO_4掺杂的影响。尤其是,nanoPANI-Au对氨(高达10 ppm)的敏感性高于对其他VOC或干扰分析物的敏感性。聚苯胺-金复合材料的简便制备方法和改善的性能在纳米材料领域具有重要意义,并有望在氨蒸气监测中应用。

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