首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >CdS-decorated UiO-66(NH2) nanocomposites fabricated by a facile photodeposition process: an efficient and stable visible-light-driven photocatalyst for selective oxidation of alcohols
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CdS-decorated UiO-66(NH2) nanocomposites fabricated by a facile photodeposition process: an efficient and stable visible-light-driven photocatalyst for selective oxidation of alcohols

机译:通过简便的光沉积工艺制备的CdS修饰的UiO-66(NH2)纳米复合材料:一种有效且稳定的可见光驱动光催化剂,用于醇的选择性氧化

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CdS nanorods have been successfully decorated on the surface of MOF (metal-organic framework) UiO-66(NH2) via a facile room-temperature photodeposition technique in a controlled manner. Electrochemical measurements indicate that the CdS photodeposition proceeds via the preferential reduction of Cd ions to Cd° followed by chemical reaction with Sg. The photocatalytic performances of the obtained CdS-UiO-66(NH2) nanocomposites have been evaluated by selective oxidation of various alcohol substrates using molecular oxygen as a benign oxidant. The results show that such CdS-UiO-66(NH2) nanocomposites exhibit considerable photocatalytic activity and stability, which may be due to the large specific surface area and the charge injection from CdS into UiO-66(NH2) leads to efficient and longer charge separation by reducing the recombination of electron-hole pairs. This work represents the first example of using MOFs not only as supports but also as electron providers to trigger the reaction for coupling MOFs with metal sulfides, thus fabricating novel MOF-CdS nanocomposite systems and improving their photocatalytic activity. It is hoped that our findings could offer useful information and open a new window for the design of novel MOF-semiconductor nanocomposites as efficient visible light driven photocatalysts.
机译:CdS纳米棒已通过可控的室温光沉积技术成功地在MOF(金属-有机骨架)UiO-66(NH2)表面装饰。电化学测量表明,CdS的光沉积是通过将Cd离子优先还原为Cd°,然后与Sg进行化学反应而进行的。通过使用分子氧作为良性氧化剂选择性氧化各种醇类底物,对获得的CdS-UiO-66(NH2)纳米复合材料的光催化性能进行了评估。结果表明,这种CdS-UiO-66(NH2)纳米复合材料表现出相当高的光催化活性和稳定性,这可能是由于较大的比表面积和从CdS注入UiO-66(NH2)的电荷导致有效且更长的电荷通过减少电子-空穴对的重组来分离。这项工作代表了使用MOF不仅作为载体而且还用作电子提供者来触发将MOF与金属硫化物偶联的反应的第一个示例,从而制造出新颖的MOF-CdS纳米复合材料系统并提高了其光催化活性。希望我们的发现可以提供有用的信息,并为设计新型MOF半导体纳米复合材料作为有效的可见光驱动光催化剂开辟新的窗口。

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