首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Fabrication of p-NiO nanoparticles/n-TiO2 nanospheres photocatalysts and their photocatalytic performance for degradation of Rh B
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Fabrication of p-NiO nanoparticles/n-TiO2 nanospheres photocatalysts and their photocatalytic performance for degradation of Rh B

机译:P-NiO纳米粒子/ N-TiO2纳米光催化剂的制备及其光催化性能下RH B降解的光催化性能

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The p-n junction structure has been regarded as an effective strategy to improve the photocatalytic activity due to their effectively separation of photoelectron-holes. In the paper, the p-NiO nanoparticles/n-TiO2 nanosphere photocatalysts were successfully fabricated by the hydrothermal method. The structure and morphology of the photocatalysts with p-n junction were systematically characterized by XRD, XPS, SEM, TEM, and UV-vis. And the photocatalytic performance of the photocatalysts was evaluated by the photocatalytic decomposition of Rh B under ultraviolet light irradiation. The results showed that the loading content of NiO nanoparticles in p-n junction had influence on their photocatalytic activity. And the optimal NiO loading content for p-n junction photocatalysts was determined. After the photodegradation of Rh B under UV irradiation for 70 min, the degradation rates of the TiO2@NiO-8 samples were reached to about 97.9%. The enhanced photocatalytic performance of the TiO2@NiO composites was attributed to the formation of p-n junction at interfacial interaction between NiO nanoparticles and TiO2 nanospheres, which promoted the effectively separation of photo electron-holes. Moreover, the photocatalytic mechanisms of the p-NiO nanoparticles/n-TiO2 nanospheres photocatalysts in the degradation processes were elucidated.
机译:由于它们有效地分离光电子孔,P-N结结构被认为是改善光催化活性的有效策略。本文通过水热法成功地制造了P-NIO纳米颗粒/ N-TiO2纳米光催化剂。通过XRD,XPS,SEM,TEM和UV-Vis系统表征了P-N结的光催化剂的结构和形态。通过紫外光照射下RH B的光催化分解评估光催化剂的光催化性能。结果表明,P-N结中NiO纳米粒子的负载含量对其光催化活性产生影响。确定了P-N结光催化剂的最佳NIO负载含量。在紫外线照射下RH B的光降解70分钟后,将TiO 2的降解速率达到约97.9%。 TiO 2 @ NiO复合材料的增强的光催化性能归因于NiO纳米颗粒和TiO2纳米球之间的界面相互作用的P-N结的形成,其促进了光电孔的有效分离。此外,阐明了P-NiO纳米颗粒/ N-TiO2纳米光学催化剂在降解过程中的光催化机制。

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