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首页> 外文期刊>Catalysis Letters >Remarkable Enhancement of Eu-TiO2-GO Composite for Photodegradation of Indigo Carmine: A Design Method Based on Computational and Experimental Perspectives
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Remarkable Enhancement of Eu-TiO2-GO Composite for Photodegradation of Indigo Carmine: A Design Method Based on Computational and Experimental Perspectives

机译:Eu-TiO2-Go复合材料的显着提高,用于靛蓝胭脂红的光降解:基于计算与实验视角的设计方法

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Environmental pollution, particularly water contamination, is regarded as one of the most crucial global problems, where a semiconductor photocatalyst towards organic pollutant degradation driven by photocatalysis is a promising technique. Herein, novel Eu-TiO2-GO composites with excellent photocatalytic performance were fabricated via simple and green sol-gel technique. In addition, density functional theory (DFT) method was employed to investigate the electronic structure, stability and charge transfer of the composites. The experimental study revealed that the optimal performance was obtained with the Eu-TiO2-GO (0.6% Eu) composite, of which the apparent rate constant was about 19-folds higher than that of bulk TiO(2)because of the combined effects of better visible light absorbance and efficient separation of charge carriers. The efficiency of Eu-TiO2-GO (0.6% Eu) in the degradation of indigo carmine (IC) dye reached 96.78% in 60 min under light irradiation. Based on the DFT method, we observe an efficient electron-hole pair separation, a potential drop and an in-built polarised electric field at the interface of Eu-TiO2-GO composite. Remarkably, Eu-TiO2-GO composite was found to exhibit a stronger interfacial interaction, smaller interlayer distance and a larger redistribution of charge than TiO2-GO composite. The stability and reusability of Eu-TiO2-GO (0.6% Eu) composite as an effective solar photocatalyst was confirmed by five cycling tests of wastewater treatment. From radical quenching experiments, hydroxyl and superoxide radicals were the dominant active species for the photodegradation reaction of IC dye. All these findings may shed light on the intrinsic reasons for the improved degradation of pollutants.
机译:环境污染,特别是水污染,被认为是最重要的全球性问题之一,其中半导体光催化剂在光催化作用下降解有机污染物是一种很有前途的技术。在此,通过简单的绿色溶胶-凝胶技术制备了具有优异光催化性能的新型Eu-TiO2-GO复合材料。此外,采用密度泛函理论(DFT)方法研究了复合材料的电子结构、稳定性和电荷转移。实验研究表明,Eu-TiO2-GO(0.6%Eu)复合材料获得了最佳性能,其表观速率常数比大块TiO(2)的表观速率常数高约19倍,这是因为具有更好的可见光吸收率和电荷载流子的有效分离的综合效应。Eu-TiO2-GO(0.6%Eu)在光照下降解靛蓝胭脂红(IC)染料的效率在60min内达到96.78%。基于DFT方法,我们在Eu-TiO2-GO复合材料的界面上观察到了有效的电子-空穴对分离、电位降和内置的极化电场。值得注意的是,与TiO2-GO复合材料相比,Eu-TiO2-GO复合材料表现出更强的界面相互作用、更小的层间距离和更大的电荷再分配。通过五次废水处理循环试验,证实了Eu-TiO2-GO(0.6%Eu)复合材料作为一种有效的太阳能光催化剂的稳定性和可重复使用性。从自由基猝灭实验来看,羟基和超氧自由基是IC染料光降解反应的主要活性物种。所有这些发现可能会揭示污染物降解改善的内在原因。

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