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首页> 外文期刊>Journal of Colloid and Interface Science >The use of gum Arabic as 'Green' stabilizer of poly(aniline) nanocomposites: A comprehensive study of spectroscopic, morphological and electrochemical properties
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The use of gum Arabic as 'Green' stabilizer of poly(aniline) nanocomposites: A comprehensive study of spectroscopic, morphological and electrochemical properties

机译:阿拉伯胶作为聚(苯胺)纳米复合材料的“绿色”稳定剂的用途:光谱,形态和电化学性质的综合研究

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Herein we show the synthesis and characterization of water dispersible composites formed by poly(aniline) and the natural polymer gum Arabic (GA), used as stabilizer. The materials were synthesized via a rapid and straightforward method and were fully characterized by different techniques such as UV-Vis, Raman, FTIR, TEM, SEM and cyclic voltammetry. TEM and SEM images revealed that the proportion of stabilizer highly influences the growth mechanism of the nanostructures. It was found spherical particles, elongated structures and large agglomerates at the lower, intermediate and at the higher GA amount, respectively. Accordingly to fluorescence spectra, different hydrophobic structures are formed depending on the GA amount in aqueous solutions, possibly acting as hosting sites for the PAN! growth. In order to further study the PANI polymerization in the presence of GA, kinetics experiments were performed and showed that nucleation is the limiting step for the composite growth and a model is proposed. Spectroscopic experiments showed that the presence of GA affects the PANI conformation, avoiding the formation of phenazine structures which highly impairs the electroactivity of PANI. The material integrity is achieved by strong hydrogen bond interactions between PANI and GA as evidenced by the study of specific N-H bands in FTIR and Raman analyses. The intensity of the hydrogen bonds decreased upon higher amounts of GA, probably due to steric impediment around the NH sites. Cyclic voltammograms showed a good electroactivity behavior of the modified electrodes presenting distinguishable diffusional processes through the adsorbed composites. By this way, we have thoroughly investigated the formation and properties of new conducting polymer composite materials. Taken into account the low toxicity of GA and the excellent dispersity in water, the materials can successfully be applied in bioelectrochemical applications or as green corrosion inhibitors. (C) 2014 Elsevier Inc. All rights reserved.
机译:本文中,我们展示了由聚苯胺和用作稳定剂的天然阿拉伯胶(GA)形成的水分散性复合材料的合成和表征。这些材料是通过快速,直接的方法合成的,并通过不同的技术(例如UV-Vis,拉曼,FTIR,TEM,SEM和循环伏安法)进行了全面表征。 TEM和SEM图像表明稳定剂的比例对纳米结构的生长机理有很大影响。发现在较低,中等和较高GA量下分别存在球形颗粒,细长结构和大团聚体。根据荧光光谱,根据水溶液中的GA量形成不同的疏水结构,可能充当PAN的宿主位点。增长。为了进一步研究在GA存在下的PANI聚合反应,进行了动力学实验,结果表明成核是复合材料生长的限制步骤,并提出了一个模型。光谱实验表明,GA的存在会影响PANI的构象,从而避免了形成吩嗪结构的现象,该结构极大地损害了PANI的电活性。通过FTIR和拉曼分析中特定N-H谱带的研究证明,PANI和GA之间的强氢键相互作用可实现材料完整性。较高的GA含量会使氢键的强度降低,这可能是由于NH位点周围的空间位阻所致。循环伏安图显示改性电极具有良好的电活性,表现出通过吸附的复合物的明显的扩散过程。通过这种方式,我们已经彻底研究了新型导电聚合物复合材料的形成和性能。考虑到GA的低毒性和在水中的优异分散性,该材料可以成功地应用于生物电化学应用或用作绿色腐蚀抑制剂。 (C)2014 Elsevier Inc.保留所有权利。

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