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Application of G-SERS for the efficient detection of toxic dye contaminants in textile effluents using gold/graphene oxide substrates

机译:G-SERS在纺织品氧化物衬底中有效检测纺织品中有毒染料污染物的应用

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The upsurge of colored, hazardous dye pollutants has led to the excessive presence of carcinogens in the environment, thereby requiring a sensitive, rapid and facile detection method. In this study, graphene oxide mediated surface enhanced Raman scattering (G-SERS) based sensor was studied on gold/reduced-graphene oxide nanocomposites (Au/GO NCs). Typical absorptions at 261 nm and 531 nm observed in UV-visible spectroscopy, XRD peaks at 24 degrees, 38.2 degrees, 44.5 degrees, 64.7 degrees, and 77.6 degrees along with the TEM images showed the formation of spherical Au nanoparticles incorporated rGO sheets. In this study, monoazo, diazo, triarylmethane, thyazine and xanthenes dyes were analyzed. Further, the predominant dye contaminant contributor: textile effluent (TE) collected from Erode, India was studied. From the G-SERS spectra it can be concluded that TE may me a mixture of azo, aryl and xanthenes dyes. Also the carcinogenic aromatic structures such as C=N and C-N were detected successfully. Synergistically, the electromagnetic enhancement from the hotspots and hot surfaces, chemical enhancement offered by rGO and effective fluorescence quenching observed result in well defined, enhanced G-SERS signals. This work suggests the feasibility of Au/GO NCs as an effective pollutant sensor in water processing and treatment plants for industrial effluents. (C) 2018 Elsevier B.V. All rights reserved.
机译:有色危险染料污染物的上升导致了环境中致癌物质的过度存在,从而需要敏感,快速和舒适的检测方法。在该研究中,研究了金/二石墨烯氧化物纳米复合材料(AU / GO NCS)上研究了石墨烯氧化物介导的表面增强的拉曼散射(G-SERS)传感器。在UV可见光谱中观察到261nm和531nm处的典型吸收,XRD峰在24度,38.2度,44.5度,64.7度和77.6度以及TEM图像中显示出球形Au纳米颗粒的形成掺入RGO片材。在本研究中,分析了单唑,重氮,三芳基甲烷,甲嗪和Xanthenes染料。此外,研究了主要染料污染物:从埃德,印度收集的纺织品流出物(TE)进行了研究。从G-SERS光谱,可以得出结论,TE可以将偶氮,芳基和X原叶染料混合物。此外,成功地检测致癌芳族结构,例如C = N和C-N.协同作用地,来自热点和热表面的电磁增强,RGO提供的化学增强,观察到良好的荧光淬火观察结果,增强的G-SERS信号。这项工作表明AU / GO NCS作为工业废水的水处理和治疗厂的有效污染物传感器的可行性。 (c)2018年elestvier b.v.保留所有权利。

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