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Au nanoparticles decorated sulfonated graphene-TiO_2 nanocomposite for sunlight driven photocatalytic degradation of recalcitrant compound

机译:Au纳米颗粒装饰磺化石墨烯-TiO_2纳米复合物用于阳光驱动的荷兰普利化合物的光催化降解

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Au nanoparticles decorated with sulfonated graphene-TiO2 nanocomposites at varying Au concentrations were prepared by hydrothermal method followed by a polyol reduction process. The structural, optical and morphological properties of the prepared photocatalyst were studied using XRD, XPS, Raman, FTIR, UV-DRS, PL and HRTEM. The results reveal that with the increasing loading of Au nanoparticles the band gap of the nanocomposite decreases, and also exhibits reduction in the electron hole pair recombination rate. The results of spectroscopic and microscopic analysis confirm the presence of Au nanoparticles and sulfonated graphene in the composite photocatalyst. The photocatalytic activity of the nanocomposite was investigated by examining the removal of Methyl Orange, Rhodamine B and recalcitrant compound p-nitrophenol under sunlight irradiation. The effect of Au loading on composite shows an increase in photocatalytic activity up to threshold value of 2 mM beyond which it decreases. At this composition, Au decorated sulfonated graphene-TiO2 composites catalyst exhibit 3.2 fold higher photocatalytic performance compared to pristine TiO2 system. The improved photo catalytic performance is attributed to the synergistic effect of increased interfacial electron transfer between composite, decreased recombination rate of photoexcited electrons and holes, and the plasmonic effect of Au nanoparticles.
机译:通过水热法制备以不同Au浓度的磺化石墨烯-TiO2纳米复合材料装饰的Au纳米粒子通过水热法,然后进行多元醇还原过程。使用XRD,XPS,拉曼,FTIR,UV-DRS,PL和HRTEM研究制备的光催化剂的结构,光学和形态学性质。结果表明,随着Au纳米颗粒的增加,纳米复合材料的带隙降低,并且还表现出电子空穴对重组率的降低。光谱和微观分析结果证实了复合光催化剂中Au纳米颗粒和磺化石墨烯的存在。通过检查阳光照射下除去甲基橙,罗丹明B和醋醋酸核化合物p-硝基苯酚,研究了纳米复合物的光催化活性。 Au加载对复合材料的影响表明,光催化活性的增加,高达2mm的阈值,其降低了2mm。在该组合物中,与原始TiO2系统相比,Au装饰磺化石墨烯-TiO2复合材料催化剂表现出3.2倍的光催化性能。改进的光催化性能归因于复合材料之间的界面电子转移增加的协同效应,降低了光透射电子和孔的重组率,以及Au纳米粒子的等离子体效应。

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