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Synthesis of Mo-doped TiO2/reduced graphene oxide nanocomposite for photoelectrocatalytic applications

机译:用于光电催化应用的Mo掺杂TiO2 /氧化石墨烯纳米复合材料的合成

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摘要

This study was carried out with the goal of lowering the band gap and electron recombination of the titanium dioxide through doping with Mo, and hybridizing with reduced graphene oxide, respectively, for photoelectrocatalytic applications. Mo with various atomic percentages (0.5, 1, 2, and 3 at%) was doped with TiO2 using the mechanical alloying technique. The results of the ultraviolet diffuse reflectance spectroscopy analysis revealed that the TiO2 doped with 1 at% Mo possessed the lowest band gap energy. Also, to further improve the photoelectrocatalytic efficiency, the 1 at% Mo-doped TiO2 powder was hybridized with the reduced graphene oxide (RGO) through UV-assisted photocatalytic reduction of the graphene oxide. The XRD, FESEM, EDX, and FTIR analyses were implemented for characterization of the TiO2, 1 at% Mo-doped TiO2, and 1 at% Mo-doped TiO2/RGO powders. The superior integration of the TiO2 and RGO was achieved as a result of the photocatalytic reduction method. After coating the powders on the fluorine-doped tin oxide (FTO) glass using the doctor blade technique, linear sweep voltammetry, amperometry, and electrochemical impedance spectroscopy tests were used to study the photoelectrocatalytic behavior of the samples. The results of the electrochemical tests showed that the photoelectrocatalytic activity of the TiO2 was significantly enhanced as doped with Mo, and hybridized with the RGO. The mechanisms affecting the photoelectrocatalytic response in the Mo-doped TiO2/RGO composite are discussed, as well.
机译:该研究是通过用MO掺杂降低二氧化钛的带隙和电子重组的目的,并分别用石墨烯氧化物杂交,用于光电催化剂应用。使用机械合金化技术掺杂具有各种原子百分比(0.5,1,2和3处的0.5,1,2和3个)的Mo。紫外线漫反射光谱分析的结果显示,掺杂1at%莫掺杂的TiO 2具有最低的带隙能量。而且,为了进一步提高光电催化效率,通过紫外线氧化物的氧化物的UV辅助光催化还原,将0%的Mo掺杂的TiO 2粉末与石墨烯(RGO)杂交。实施XRD,FESEM,EDX和FTIR分析以表征TiO2,1在%Mo掺杂的TiO 2处,1at%Mo-Doped TiO2 / Rgo粉末。由于光催化还原方法,实现了TiO2和Rgo的优异集成。在使用刮刀技术掺杂氟掺杂的氧化锡(FTO)玻璃上涂覆粉末之后,使用线性扫描伏安法,安培测定法和电化学阻抗光谱检验来研究样品的光电催化行为。电化学试验的结果表明,用Mo掺杂并与RGO杂交,TiO 2的光电催化活性显着增强。讨论了影响Mo掺杂TiO2 / RGO复合材料中的光电催化反应的机制。

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