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Synthesis of PEDOT/ZnO Photocatalyst: Validation of Photocatalytic Activity by Degradation of Azo RR45 Dye Under Solar and UV-A Irradiation

机译:PEDOT / ZnO光催化剂的合成:通过紫外线辐照下偶氮RR45染料降解光催化活性的验证

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摘要

To study the photocatalytic efficiency of wastewater treatment processes, the nanocomposites of conducting polymer poly(3,4-ethylenedioxythiophene) (PEDOT) and ZnO nanoparticles were prepared by in-situ synthesis. ZnO is an excellent photocatalyst under UV light, but due to high band gap, photons of visible light have insufficient energy to excite electrons from valence to conductive band, which limits its activity under visible light and therefore practical usage is limited. The PEDOT conductive polymer was used to increase the photocatalytic activity of ZnO since conductive polymers are known as efficient electron donor and good electron transporters upon visible-light excitation. Polymerization of pure PEDOT and PEDOT/ZnO nanocomposites was carried out at varying monomer:oxidant ratio (1:2; 1:3; 1:5) with the ammonium persulfate (APS) used as the oxidant. Samples were characterized by FTIR spectroscopy, XRD analysis, SEM microscopy, UV-Vis spectroscopy and TG analysis. Photocatalytic activity was assessed through removal of C.I. Reactive Red 45 (RR45) azo dye under simulated Solar andUV-A irradiation. Photocatalysis was monitored by measuring discoloration of RR45 using UV/Vis spectroscopy. The results indicate that very low concentration of PEDOT conductive polymer in PEDOT/ZnO nanocomposite can significantly contribute to theefficiency of the photocatalytic process during wastewater treatment.
机译:为了研究污水处理过程中的光催化效率,通过在原位合成制备导电聚合物聚(3,4-亚乙基)(PEDOT)和ZnO纳米颗粒的纳米复合材料。 ZnO是在UV光下的光催化剂优良,但由于高的带隙,可见光的光子具有足够的能量从价激发电子到导带,这限制了在可见光下其活性,因此实际使用受到限制。的PEDOT导电聚合物用于增加ZnO的光催化活性,因为导电性聚合物在可见光激发称为有效电子给体和良好的电子运输。与用作氧化剂的过硫酸铵(APS)的纯PEDOT和PEDOT /氧化锌纳米复合材料的聚合反应在不同的单体进行的:氧化剂比(5 1:2;::1 1 3)。通过红外光谱,X射线衍射分析,SEM显微镜,紫外 - 可见光谱和TG分析样品进行了表征。光催化活性是通过去除C.I.的评估活性红45(RR45)下模拟太阳和偶氮染料UV-A照射。光催化通过使用UV / Vis光谱测量RR45的变色监测。结果表明PEDOT的非常低的浓度的导电聚合物在PEDOT /纳米ZnO复合材料可以显著向废水处理过程中,光催化过程的效率。

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    Z. Katančić;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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