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Thin films of polyaniline deposited by MAPLE technique

机译:MAPLE技术沉积的聚苯胺薄膜

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Polyaniline (PAni) has important electro-conductive properties, high absorbance in microwave range and it is also frequently used in gas sensors because of its capability to convert chemical interactions into electrical signals. The methods of obtaining polyaniline in the form of thin films and/ or nanostructures are complicated and request special physical and chemical treatments, both on the substrate surface and for the polymer itself.rnIn this paper we applied matrix assisted pulsed lased evaporation (MAPLE) for obtaining thin films and nanostructures of polyaniline. In MAPLE, the target consisting of the material (usually 0.2-3 wt%) dissolved in a solvent is frozen and it is evaporated using a laser. In our case polyaniline-emeraldine salt (PAni-ES) was dissolved in xylene or toluene, frozen in liquid nitrogen and was used as target. The third and the fourth harmonics of a Nd-YAG laser (λ = 355 nm and 266 nm) were used as laser sources. The obtained films have been characterized by atomic force microscopy, dielectric spectroscopy and Fourier transform infrared spectroscopy. The influence of the solvent type and of the laser parameters (wavelengths and fluence) on the polyaniline structures composition and properties has been investigated.
机译:聚苯胺(PAni)具有重要的导电性能,在微波范围内具有很高的吸收率,并且由于其能够将化学相互作用转换为电信号的能力,因此也经常用于气体传感器。以薄膜和/或纳米结构形式获得聚苯胺的方法很复杂,需要在基材表面和聚合物本身上进行特殊的物理和化学处理。在本文中,我们将基质辅助脉冲激光蒸发(MAPLE)获得聚苯胺的薄膜和纳米结构。在MAPLE中,将由溶解在溶剂中的材料(通常为0.2-3 wt%)组成的目标冷冻,并使用激光将其蒸发。在我们的情况下,将聚苯胺-翡翠盐(PAni-ES)溶于二甲苯或甲苯,在液氮中冷冻,并用作目标。 Nd-YAG激光器的第三和第四谐波(λ= 355 nm和266 nm)用作激光源。所获得的膜已经通过原子力显微镜,介电光谱和傅立叶变换红外光谱进行了表征。研究了溶剂类型和激光参数(波长和注量)对聚苯胺结构组成和性能的影响。

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