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Enhancement of visible and UV light photocatalytic activity of rGO-TiO2 nanocomposites: The effect of TiO2/Graphene oxide weight ratio

机译:rgo-TiO2纳米复合材料的可见光和UV光催化活性的增强:TiO2 /石墨烯氧化物重量比的影响

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In this study, rGO - TiO2 nanocomposites were prepared by means of a simple hydrothermal approach using TiO2 powder and GO nanosheets as starting materials. The TiO2/GO weight ratio varied from 0.25 to 2 wt%. The prepared samples were characterized using AFM, SEM and TEM microscopy as well as XRD, EDX, Raman, FTIR and UV-Vis spectroscopies. BET and BJH measurements were also performed to obtain the specific surface area and pore diameter size of the synthesized samples. It was found that the samples with TiO2/GO weight ratio below one have high effective surface area about 124 g/m(2) and pore size of 6 nm. Photocatalyst evaluation revealed that only 0.06 mg/ml of prepared composite degraded 90% of 20 ppm Methylene blue (MB) in 15 min under 50 mW/cm(2) UV light intensity. The linear kinetic rate constant (k) of the samples promoted from 22 x 10(-3) min(-1) for TiO2 under UV exposure up to 153 x 10(-3) min(-1 )and 65 x 10(-3) min(-1) for composites under UV and visible irradiation, respectively. More detailed analyses showed that the photocatalytic activity of samples obtained figure of merit below unity. To the best of our knowledge this seems to be an impressive result. Impedance spectroscopy analysis revealed that the enhancement of charge transfer in composites as well as high effective surface area and their mesoporous structure are mainly responsible for the significant enhancement of MB photodegradation. The reactive species trapping experiments were performed by a series of radical scavengers. On the basis of the experimental results, the electrons and superoxide ions species play the main role in degradation of MB.
机译:在该研究中,通过使用TiO2粉末的简单的水热方法制备RGO - TiO2纳米复合材料,并将纳米片作为起始材料进行制备。 TiO2 /返回重量比0.25至2wt%变化。使用AFM,SEM和TEM显微镜以及XRD,EDX,拉曼,FTIR和UV-Vis光谱表征制备的样品。还进行了下注和BJH测量以获得合成样品的比表面积和孔径尺寸。发现具有TiO 2 /返回重量比的样品具有高有效的表面积约124g / m(2)和6nm的孔径。光催化剂评价显示,在50mW / cm(2)uV光强度下,仅在15分钟内降解了20%的制备的复合材料在15分钟内降解了20%的20ppm亚甲基蓝(MB)。样品的线性动力速率常数(k)在紫外线暴露下促进22×10(-3)min(-1),高达153×10(-3)min(-1)和65×10( - 3)分别为紫外线和可见辐射下复合材料的Min(-1)。更详细的分析表明,样品的光催化活性获得了低于统一的价值。据我们所知,这似乎是一个令人印象深刻的结果。阻抗光谱分析显示,复合材料中的电荷转移以及高有效表面积及其介孔结构的增强主要负责MB光降解的显着增强。通过一系列自由基清除剂进行反应性物质捕获实验。在实验结果的基础上,电子和超氧化物离子物种在Mb的降解中起主要作用。

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