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Enhanced Photocatalytic Performance of Silver Decorated Zinc Oxide Nanoparticles Grown on Silica Microparticles

机译:增强光催化性能的银色装饰氧化锌纳米粒子在二氧化硅微粒上生长

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摘要

Pure and Ag-decorated ZnO nanoparticles (NPs) were synthesized using a two stage of modified sol-gel technique on microsized substrates, namely sand particles in an effort to prevent agglomeration during photocatalytic reactions. It was found that ZnO NPs can be grown efficiently on sand particles with good adhesion due to the presence of nanosized pits and cracks on the sand surface. The photocatalytic activity of supported pure ZnO NPs was compared to that unsupported pure ZnO NPs of similar size based on the photodegradation of methylene blue (MB) under UV light irradiation. For pure ZnO NPs, the photodegradation rate constant, k recorded for supported sample was found to be 8.6 x 10(-3) min(-1), being twice the value of that unsupported sample. Meanwhile, the presence of Ag-content that decorated on ZnO NPs has shown gradual increase in rate constants of Ag/Zn ratios from 0.08 to 1.39. The two rate constant values, k(1) and k(2) have all been observed for each Ag-decorated samples, having k(2) greater than that k(1) in all such cases. This can be explained by the accelerated degradation activities at lower MB concentrations. In summary, the efficiency of growing pure and Ag-decorated ZnO NPs on sand particles have therefore enhanced the photodegradation capabilities over pure ZnO which due to the prevention of agglomeration in the supported samples.
机译:使用纯和Ag装饰的ZnO纳米颗粒(NPS)在微晶衬底上的两级改性溶胶 - 凝胶技术合成,即砂颗粒,以防止光催化反应期间的聚集。结果发现,由于纳米型凹坑和砂表面上的裂缝,ZnO NPS可以在具有良好粘附性的砂颗粒上生长。将负载纯ZnO NPS的光催化活性与UV光照射下亚甲基蓝(MB)的光降解的相似尺寸的不支持纯ZnO NP进行比较。对于纯ZnO NPS,发现用于支持样品的光降解速率常数K为8.6×10(-3)分钟(-1),是不支持样品的两倍。同时,在ZnO NPS上装饰的Ag含量的存在表明,Ag / Zn比率的速率常数从0.08〜1.39的速率常数增加。对于每个AG装饰样品,所有这些AG装饰样品都观察到两个速率常数值K(1)和K(2),在所有此类情况下大于K(1)。这可以通过较低Mb浓度下的加速降解活性来解释。总之,在砂颗粒上生长和Ag装饰的ZnO NP的效率增强了纯ZnO上的光降解能力,这是由于在负载样品中预防集聚。

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