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首页> 外文期刊>Journal of Molecular Liquids >Facile and inexpensive synthesis of Ag doped ZnO/CNTs composite: Study on the efficient photocatalytic activity and photocatalytic mechanism
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Facile and inexpensive synthesis of Ag doped ZnO/CNTs composite: Study on the efficient photocatalytic activity and photocatalytic mechanism

机译:Ag掺杂ZnO / CNTS复合材料的容易和廉价合成:高效光催化活性和光催化机制的研究

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摘要

In present study, an effective photocatalytic activity for Reactive Black GR and metronidazole degradation was evaluated using microwave-assisted prepared Ag doped ZnO, ZnO/CNTs and Ag doped ZnO/CNTs composites as photocatalyst under visible and sunlight irradiation. The photocatalysts were extensively characterized using a variety of standard tools. The results of XRD and XPS analysis identified the presence of Ag in synthesized composites. The introduction of Ag into the lattice of ZnO deteriorated crystal growth with the reduction of crystallites size, suppressed electron-hole pair's rate and shift in the optical absorption response from UV to visible region due to its surface plasmon resonance effect. The presence of CNTs enhanced the specific surface area of the composites meanwhile content of hydroxyl oxygen at the surface reduced concurrently, that increased the surface hydroxyl groups in the framework of ZnO. Moreover, CNTs acted as electron sink to significantly reduce the photocorrosion of ZnO, consequently improving the photostability of the synthesized samples. An appropriate amount of Ag (2 wt%) and CNTs (2 wt%) (AZC1 composite) was measured to be an optimized composition in accordance with the highest efficiency of the photocatalytic activity. The photocatalytic activity of AZC1 composite for the degradation of Reactive Black GR was measured to be 100% within just 30 min of solar light irradiation and 120 min of visible light illumination, while the corresponding metronidazole degradation was achieved within 40 min of solar light irradiation and 120 min of visible light illumination. A photocatalytic mechanism was proposed to explain the increased photocatalytic performance of the synthesized photocatalysts. This work represents an effective strategy to enhance the photocatalytic activity of ZnO and provides information to synthesize facile, inexpensive and eco-friendly Ag doped ZnO/CNTs photocatalysts. (C) 2020 Elsevier B.V. All rights reserved.
机译:在目前的研究中,使用微波辅助制备的Ag掺杂的ZnO,ZnO / CNT和Ag掺杂的ZnO / CNTs复合材料评估了用于反应性黑GR和甲硝唑劣化的有效光催化活性,作为光催化剂,在可见光辐照下。使用各种标准工具进行广泛性地进行光催化剂。 XRD和XPS分析的结果鉴定了合成复合材料中Ag的存在。通过降低微晶尺寸,抑制电子 - 空穴对的速度和从UV的光学吸收响应的速率的降低引入ZnO劣化的晶体生长晶格中的晶格劣化的晶格中的晶格劣化的晶体生长劣化。 CNT的存在增强了复合材料的比表面积,同时表面在表面上的羟基含量同时减少,其增加了ZnO框架中的表面羟基。此外,CNT用作电子沉降,以显着减少ZnO的光腐蚀,从而提高了合成样品的光稳定性。根据光催化活性的最高效率测量,测量适量的Ag(2wt%)和CNTs(2wt%)(2wt%)(AZC1复合材料)是优化的组合物。测量反应性黑GR的降解的AZC1复合材料的光催化活性在太阳光照射的仅30分钟内为100%,并且在40分钟的可见光照射中,在太阳光照射的40分钟内实现相应的甲硝唑劣化。可见光照明120分钟。提出了一种光催化机理来解释合成光催化剂的显光催化性能增加。这项工作代表了增强ZnO的光催化活性的有效策略,并提供了合成容易,便宜的和生态友好的AG掺杂ZnO / CNTS光催化剂的信息。 (c)2020 Elsevier B.v.保留所有权利。

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