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Self-Assembled Reduced Graphene Oxide-TiO2 Thin Film for the Enhanced Photocatalytic Reduction of Cr(VI) Under Simulated Solar Irradiation

机译:在模拟太阳照射下,自组装的降氧氧化物-TiO2薄膜,用于增强Cr(VI)的CR(VI)的增强光催化还原

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In this study, reduced graphene oxide-TiO2 (RGO-TiO2) thin film was prepared by a simple self-assembly method at the gas/liquid interface. The as-prepared thin films were characterized by X-ray diffraction (XRD), Raman spectra, scanning electron microscopy (SEM), UV-visible-diffuse reflectance spectroscopy (UV-vis-DRS) and X-ray photoelectron spectroscopy (XPS). Photocatalytic activities of TiO2 and RGO-TiO2 thin film were investigated via the reduction of Cr(VI) under simulated solar light and visible light (lambda 420 nm) irradiation. The results showed that the RGO-TiO2 thin film exhibited remarkably enhanced activity for photoreduction of Cr(VI) under simulated sunlight or visible light irradiation, with a reaction rate constant of 5.7 times greater than that of pure TiO2 thin film. The main reason for enhanced photocatalytic activity is that introduction of RGO can restrain the recombination of photogenerated electron-hole pairs and reduce the aggregation of TiO2 NPs. The effects of different reaction parameters such as irradiation time, irradiation source, pH values, catalyst dosage and initial Cr(VI) concentration were investigated in detail. The highest photoreduction efficiency of Cr(VI) was achieved and the reduction rate constant k was 0.0189 min(-1) during the reduction of 0.5 mg . L-1 of Cr(VI) with 10 cm(2) RGO-TiO2 thin film at pH 2.0 and 293 K. Moreover, different scavengers were also added in the photoreduction of Cr(VI) system to identify the reactive species. Based on the results of the present study, a possible mechanism of photoreduction on RGO-TiO2 thin film under simulated solar light was proposed. Overall, this study provides a novel approach to efficiently photoreduction of Cr(VI) by RGO-TiO2 thin film.
机译:在该研究中,通过在气/液界面处通过简单的自组装方法制备了还原的石墨烯-TiO2(RGO-TiO2)薄膜。通过X射线衍射(XRD),拉曼光谱,扫描电子显微镜(SEM),UV可见光反射光谱(UV-VIS-DRS)和X射线光电子谱(XPS)的制备薄膜特征。 。通过在模拟的太阳光和可见光(Lambda> 420nm)照射下,通过减少CR(VI)来研究TiO2和Rgo-TiO2薄膜的光催化活性。结果表明,RGO-TiO2薄膜在模拟阳光或可见光照射下表现出对Cr(VI)的光触发的显着增强活性,反应速率常数为纯TiO 2薄膜的5.7倍。增强光催化活性的主要原因是rgo的引入可以抑制光生电子 - 空穴对的重组并减少TiO2 NP的聚集。详细研究了不同反应参数如辐照时间,辐射源,pH值,催化剂剂量和初始Cr(VI)浓度的影响。在减少0.5mg期间,实现了Cr(VI)的最高光电验效,并且还原率常数k为0.0189分钟(-1)。在pH 2.0和293k的10cm(2)rgo-TiO2薄膜的Cr(vi)的L-1在Cr(vi)系统的光诊断中也加入不同的清除剂以鉴定反应性物种。基于本研究的结果,提出了一种在模拟太阳灯下的RGO-TiO2薄膜上的可能性的光学机制。总体而言,该研究提供了一种新的rgo-TiO2薄膜有效地拍摄Cr(VI)的新方法。

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