首页> 外文期刊>Australian Journal of Chemistry: A Journal for the Publication of Original Research in All Branches of Chemistry >Improved Photocatalytic Activity of Copper Heterostructure Composites (Cu-Cu2O-CuO/AC) Prepared by Simple Carbothermal Reduction
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Improved Photocatalytic Activity of Copper Heterostructure Composites (Cu-Cu2O-CuO/AC) Prepared by Simple Carbothermal Reduction

机译:简单碳热还原法制备铜异质结构复合材料(Cu-Cu2O-CuO / AC)的改进的光催化活性

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摘要

Cu-Cu2O-CuO/activated carbon heterostructure composites with visible-light activity have been successfully synthesized by a simple carbothermal reduction procedure using CuSO4 as a single precursor. The resultant samples were characterized by X-ray diffraction, transmission electron microscopy, and X-ray photoelectron spectroscopy measurements. The results showed that the Cu-Cu2O-CuO composites with size less than 10 nm dispersed well on the surface of activated carbon. Activated carbon played both a reducing agent and support role in the formation of Cu-Cu2O-CuO/ activated carbon heterostructure composites. X-ray photoelectron spectroscopy analysis suggests that the outside of the nanoparticles is CuO and the inside of the nanoparticles is Cu metal and Cu2O. Moreover, the composition of Cu-Cu2O-CuO/activated carbon composites can be tailored by varying the Cu loading, heat-treatment temperature, and heat-treatment time. The photocatalytic activities of the catalysts were investigated by degrading reactive brilliant blue KN-R under visible-light irradiation. The Cu-Cu2O-CuO/activated carbon heterostructure composites showed excellent photocatalytic activity compared with other catalysts (pure CuO, Cu2O, Cu2O/activated carbon, CuO/activated carbon, and Cu2O-CuO/activated carbon), which is ascribed to synergistic action between the activated carbon support and photoactive copper species, and the presence of interfacial structures such as a Cu2O/CuO heterostructure, Cu/Cu2O (or CuO) Schottky barrier, and Cu2O/Cu/CuO ohmic heterojunction.
机译:具有可见光活性的Cu-Cu2O-CuO /活性炭异质结构复合材料已通过简单的碳热还原程序(以CuSO4为单一前体)成功合成。通过X射线衍射,透射电子显微镜和X射线光电子能谱测量来表征所得样品。结果表明,尺寸小于10nm的Cu-Cu2O-CuO复合材料在活性炭表面分散良好。活性炭在形成Cu-Cu2O-CuO /活性炭异质结构复合材料时既起到还原剂的作用,又起支撑作用。 X射线光电子能谱分析表明,纳米颗粒的外部是CuO,纳米颗粒的内部是Cu金属和Cu 2O。而且,可以通过改变Cu负载量,热处理温度和热处理时间来定制Cu-Cu 2 O-CuO /活性炭复合材料的组成。通过在可见光照射下降解活性艳蓝KN-R,研究了催化剂的光催化活性。与其他催化剂(纯CuO,Cu2O,Cu2O /活性炭,CuO /活性炭和Cu2O-CuO /活性炭)相比,Cu-Cu2O-CuO /活性炭异质结构复合材料表现出优异的光催化活性。活性碳载体和光敏铜物质之间存在介电常数,以及存在诸如Cu2O / CuO异质结构,Cu / Cu2O(或CuO)肖特基势垒和Cu2O / Cu / CuO欧姆异质结等界面结构。

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