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Ag-TiO 2 Nanocomposites: Visible Or Solar Light Driven Plasmonic Photocatalysis?

机译:Ag-TiO 2纳米复合材料:可见或太阳能灯驱动电浆光催化?

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Background: The demand for photocatalytic processes assisted by solar radiation has stimulated the upgrading of established systems, as the semiconductor modification with noble metals. Objective: the synthesis, characterization, and photocatalytic activity evaluation of the Ag-TiO 2 , against sulfamethoxazole molecule, and investigate the significance of the plasmonic phenomenon in Visible (450 - 1000nm) and UV-Vis (315-800 nm) radiation. Methods: Different nanocomposites Ag/TiO 2 ratios were synthesized by the deposition of Ag nanoparticles on the TiO 2 surface by in-situ photoreduction, and then calcinated at 400°C for 2 hr. The chemical-physical properties of the materials were examined by UV-Vis Diffuse Reflectance (UV-Vis DR) Scanning Electronic Microscopy (SEM), Transmission Electronic Microscopy (TEM), X-Ray Energy Dispersive Spectroscopy (EDS). The experiments were conducted in a cooled photochemical reactor irradiated by halogen lamp (250W). The degradation of Sulfamethoxazole was monitored by HPLC-DAD. Results: Although the prepared photocatalysts show an intense plasmonic band centered at 500 nm, no photocatalytic activity was observed in the process assisted by artificial visible radiation (λ ≥ 450 nm). In processes assisted by artificial UV-Vis radiation, the photolysis rate of the model compound (sulfamethoxazole) was higher than the photocatalytic rate, and in the absence of UV radiation, all the reactions were inhibited. The positive effect of the presence of silver nanoparticles onto the TiO 2 surface was only evidenced in studies involving solar radiation. Conclusion: The results suggest the need for a balance between UV and Vis radiation to activate the nanocomposite and perform the sulfamethoxazole degradation.
机译:背景:光催化的需求由太阳辐射辅助进程刺激建立系统的升级,随着半导体与高贵的修改金属。表征和催化活性评估Ag-TiO 2票反对磺胺甲恶唑分子和调查电浆现象的意义可见(450 - 1000 nm)和紫外可见(315 - 800海里)辐射。Ag / TiO 2比率是合成的Ag纳米颗粒的沉积TiO 2表面原位光致还原作用,然后2小时的教廷在400°C。chemical-physical材料的属性检查紫外可见漫反射率吗(紫外可见博士)扫描电子显微镜(SEM),透射电子显微镜(TEM)、x射线能量色散谱(EDS)。在冷却实验光化学反应器卤素灯的辐照(250 w)。由HPLC-DAD监控。准备论文展示了一个强烈的电浆带集中在500海里,没有光催化活动过程中观察到的协助下人工可见辐射(λ≥450海里)。过程由人工辅助紫外可见辐射的光解速率模型复合(磺胺甲恶唑)高于光催化速率,在紫外线的缺失辐射,所有的反应被抑制了。银的存在的积极影响纳米粒子在TiO 2只是表面证明涉及太阳辐射的研究中。结论:结果显示需要紫外线和力之间的平衡辐射激活纳米复合材料和执行磺胺甲恶唑退化。

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