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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Characterization and photoreactivity of N-, S-, and C-doped ZnO under UV and visible light illumination
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Characterization and photoreactivity of N-, S-, and C-doped ZnO under UV and visible light illumination

机译:紫外和可见光照射下N,S和C掺杂的ZnO的表征和光反应性

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摘要

N-, S-, and C-doped ZnO (N,S,C-ZnO) particles were synthesized from thiourea and zinc sulfate via a precipitation method and were characterized by XRD, XPS, UV-vis spectroscopy, and BET techniques. The photocatalytic activities of the N,S,C-ZnO samples were evaluated by the degradation of acid orange 7 (A07) and phenol under UV and visible light illumination. XRD results showed that crystallization of the N,S,C-ZnO samples was not well developed after calcination below 700 °C. XPS results suggested that N, S, and C atoms in the samples were predominantly in the bonds of Zn—N, Zn—S and Zn—C after calcination at 500 °C, and were transformed to oxidized forms at 800 °C. UV-vis spectroscopy indicated that dopants N,S,C-species can shift the absorption edge to the visible light region. Incorporating N,S,C-species at appropriate quantities reduced the crystal size and increased the surface area of ZnO samples. The visible light activity of the N,S,C-ZnO samples was confirmed by degradation of phenol. The optimal molar ratios of thiourea to zinc sulfate are 1 and 2 for the highest photocatalytic activities under UV and visible light illumination, respectively. Under visible light illumination, A07 probably degrades through both the photocatalytic and photosensitized pathways as a result of visible light absorption by N,S,C-ZnO and AO7.
机译:通过沉淀法由硫脲和硫酸锌合成N,S和C掺杂的ZnO(N,S,C-ZnO)颗粒,并通过XRD,XPS,UV可见光谱和BET技术对其进行表征。 N,S,C-ZnO样品的光催化活性通过在紫外和可见光照射下降解酸性橙7(A07)和苯酚来评估。 XRD结果表明,在700°C以下煅烧后,N,S,C-ZnO样品的结晶没有很好地发展。 XPS结果表明,样品在500°C煅烧后,N,S和C原子主要存在于Zn-N,Zn-S和Zn-C的键中,并在800°C时转变为氧化形式。紫外可见光谱表明,掺杂物N,S,C种类可以将吸收边缘移至可见光区域。适当掺入N,S,C物种会减小晶体尺寸并增加ZnO样品的表面积。 N,S,C-ZnO样品的可见光活性通过苯酚的降解得到证实。对于在紫外线和可见光照射下具有最高的光催化活性,硫脲与硫酸锌的最佳摩尔比分别为1和2。在可见光照射下,由于N,S,C-ZnO和AO7吸收可见光,A07可能通过光催化途径和光敏途径降解。

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