首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Double-sided plasmonic silver nanoparticles decorated copper oxide/zinc oxide heterostructured nanomaces with improving photocatalytic performance
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Double-sided plasmonic silver nanoparticles decorated copper oxide/zinc oxide heterostructured nanomaces with improving photocatalytic performance

机译:双面等离子体银纳米粒子装饰氧化铜/氧化锌异质结构纳米,具有改善光催化性能

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The CuO/ZnO heterostructured nanomaces can be directly grown on the copper gauze substrates with CuO nanowires by a wet chemical approach at the lower reaction temperature. The concentration of ZnO precursor can easily control the sizes of ZnO branched nanowires. CuO/ZnO heterostructured nanomaces presented superior photocatalytic activity toward rhodamine 6 G removal compared with commercial ZnO or TiO2 nano particles under low-powered UV-light irradiation. Further investigation has revealed that CuO/ZnO heterostructured nanomaces significantly improved activity as a recyclable photocatalyst for the degradation of rhodamine 6 G. Also, the uniform sizes of Ag nanoparticles can decorate onto the interface and surface of CuO/ ZnO heterostructured nanomaces via a sample ion-beam sputtering method. The quaternary CuO/Ag/ZnO/Ag heterostructured nanomaces can provide the adequate separation of photoinduced electron-hole pairs and more surface active sites, which exhibited a higher photocatalytic efficiency rather than CuO/ZnO heterostructured nanomaces.
机译:CuO / ZnO异质结构纳米可以通过湿化学方法在较低反应温度下用CuO纳米线直接生长在铜纱布底物上。 ZnO前体的浓度可以容易地控制ZnO支化纳米线的尺寸。 CuO / ZnO异质结构的纳米物质呈现出与低功率UV光照射的商业ZnO或TiO2纳米颗粒相比的罗丹明6g去除的优异的光催化活性。进一步的研究表明,CuO / ZnO异质结构纳米显着改善了作为罗丹明6 G的降解的可回收光催化剂的活性。此外,Ag纳米颗粒的均匀尺寸可以通过样品离子装饰到CuO / ZnO异质结构纳米组织的界面和表面上 - 光束溅射方法。季甲基CuO / Ag / ZnO / Ag异质结构纳米可以提供光致电子 - 空穴对和更多表面活性位点的足够分离,其表现出更高的光催化效率而不是CuO / ZnO异质结构的纳米。

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