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首页> 外文期刊>Separation and Purification Technology >Enhanced visible light photocatalytic degradation of acetaminophen withAg(2)S-ZnO@rGO core-shell microsphere as a novel catalyst: Catalyst preparation and characterization and mechanistic catalytic experiments
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Enhanced visible light photocatalytic degradation of acetaminophen withAg(2)S-ZnO@rGO core-shell microsphere as a novel catalyst: Catalyst preparation and characterization and mechanistic catalytic experiments

机译:增强的可见光光催化乙酰氨基酚(2)S-ZnO @ rgo核心 - 壳微球作为新型催化剂:催化剂制备和表征和机械催化实验

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Ag2S-ZnO@rGO core-shell structured microspheres were prepared through a very simple, novel and green in-situ method using dimethyl sulfoxide as both the solvent and sulfur S source at low temperature (140 degrees C). The photocatalytic performance of synthesized samples was tested for degradation of acetaminophen (ACT) under visible light irradiation. ACT removal efficiency was directly depended on the GO-level in composite and the maximum photocatalytic yield was achieved for the sample with GO concentration of 0.2 g/L. Formation of Ag2S in the nanocomposite was confirmed using XRD, XPS and UV-Vis DRS and photoluminescence (PL) measurement. XRD patterns pointed to the existence of a wurtzite structure for all samples and by silver loading, Ag2S peaks were visualized in the XRD patterns, with increased intensity by rising the Ag content in the solution precursor. EDS and XPS data indicated the presence of sulfur and silver in the form of Ag+ and S2-. A considerable red shift in absorption edge and reduce in PL emission peak intensity was observed over the introduction of Ag in the precursor solution due to the existence of Ag2S. The Ag2S-ZnO@rGO composites indicated enhanced photocatalytic performance toward degradation of ACT under visible light compared to bare ZnO and ZnO@rGO. The underlying mechanism has been investigated based on the results of UV-Vis DRS, PL and reactive species scavenging experiments. The improved photocatalytic activity is mainly ascribed to better light harvesting and increased photogenerated electron-hole separation. Ag2S play an important role in the composite due to the synergistic effect of Ag2S and rGO, which not only improve the light harvesting but also reduce the charge recombination. The as-made catalyst indicated a great potential for recycling, suggesting the potentially large-scale applications of prepared catalyst for emerging water contaminants and wastewater treatment. The cytotoxicity of untreated and photocatalytic oxidation (PCO)-treated ACT solutions was evaluated using the cultured human embryonic kidney (HEK) cells, which revealed that ACT solution in the developed PCO system could be significantly detoxified.
机译:AG2S-ZnO @ Rgo核 - 壳结构微球通过使用二甲基砜作为溶剂和低温(140℃)的溶剂和硫S源。在可见光照射下测试合成样品的光催化性能以降解乙酰氨基酚(ACT)。作用去除效率直接依赖于复合材料中的去水平,并为样品实现最大光催化产率,浓度为0.2g / l。使用XRD,XPS和UV-VIS和光致发光(PL)测量来确认纳米复合材料中Ag2S的形成。 XRD图案指向所有样品的紫立岩型结构的存在和通过银载负载,通过在溶液前体中上升Ag含量,在XRD图案中被视为XRD图案中的峰值。 EDS和XPS数据表明了AG +和S2-形式的硫和银。在前体溶液引入由于Ag2S的存在,在前体溶液中引入AG的引入,观察到吸收边缘的相当大的红移并降低了PL发射峰强度。与裸ZnO和ZnO @ rgo相比,Ag2S-ZnO @ Rgo复合材料表明,与裸ZnO和ZnO @ Rgo相比,可见光下的动作降解的光催化性能。基于UV-VIS DRS,PL和反应性物种清除实验的结果研究了潜在的机制。改善的光催化活性主要归因于更好的光收集和增加的光静电电子孔分离。由于AG2S和RGO的协同效应,AG2S在复合材料中发挥着重要作用,这不仅改善了光收获,而且还降低了电荷重组。原制催化剂表明了循环循环潜力的巨大潜力,表明制备催化剂的潜在大规模应用用于新出现的水污染物和废水处理。使用培养的人胚胎肾(HEK)细胞评估未处理和光催化氧化(PCO)-Treatal氧化的细胞毒性(PCO)-Treated Act溶液,揭示了发发的PCO系统中的作用溶液可以显着解毒。

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