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A Novel Delafossite Structured Visible-Light Sensitive AgFeO 2 Photocatalyst: Preparation, Photocatalytic Properties, and Reaction Mechanism

机译:新型铜铁矿结构可见光敏AgFeO 2光催化剂:制备,光催化性能及反应机理

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This work presents a systematic study of a novel efficient visible-light sensitive AgFeO 2 photocatalyst. The photocatalysts were prepared via simple hydrothermal procedure at 160 °C with different reaction time. The structures, morphologies, specific surface areas, and optical properties of the photocatalysts were explored by X-ray diffraction (XRD), field emission scanning electron microscopy (FE-SEM), Brunauer-Emmett-Teller (BET) model, and UV-vis diffuse reflectance spectra (DRS). Photoluminescence and photocurrent analysis were conducted for the understanding of photogenerated electron-hole pair separation. AgFeO 2 with a six-hour hydrothermal procedure demonstrated the most efficient photocatalytic performance which resulted in 97% degradation of methyl orange (MO) within 180 min. The enhanced photocatalytic activity was attributed to the combined effect of its relatively large surface area and high separation electron-hole pair efficiency. Holes and ·O 2 ? were the dominant reactive species responsible for MO degradation and holes played the leading role according to the quenching effects analysis and detection of active species. The conduction and valence band position of AgFeO 2 were calculated to be ?0.5 V and 1.32 V, respectively. Based on active species detection, along with the band structure, the photocatalytic mechanism was proposed.
机译:这项工作提出了一种新型的有效的可见光敏感的AgFeO 2光催化剂的系统研究。通过简单的水热程序在160℃下以不同的反应时间制备光催化剂。通过X射线衍射(XRD),场发射扫描电子显微镜(FE-SEM),Brunauer-Emmett-Teller(BET)模型和UV-X光谱研究了光催化剂的结构,形态,比表面积和光学性质。可见漫反射光谱(DRS)。进行光致发光和光电流分析以了解光生电子-空穴对的分离。 AgFeO 2具有六个小时的水热程序,显示出最有效的光催化性能,可在180分钟内降解97%的甲基橙(MO)。较高的光催化活性归因于其相对较大的表面积和较高的分离电子-空穴对效率的综合作用。孔和·O 2?根据猝灭效应分析和活性种的检测,它们是导致MO降解的主要反应种,而空穴起主导作用。 AgFeO 2的导带和价带位置经计算分别为?0.5 V和1.32V。基于活性物种检测,结合能带结构,提出了光催化机理。

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