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首页> 外文期刊>Applied Surface Science >Zinc oxide incorporated carbon nanotubes or graphene oxide nanohybrids for enhanced sonophotocatalytic degradation of methylene blue dye
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Zinc oxide incorporated carbon nanotubes or graphene oxide nanohybrids for enhanced sonophotocatalytic degradation of methylene blue dye

机译:掺有氧化锌的碳纳米管或氧化石墨烯纳米杂合物,用于增强声光催化降解亚甲基蓝染料

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Zinc oxide (ZnO) nanocrystallites with different weight ratios are incorporated into carbon nanotubes (ZnO/CNTs) or graphene oxide (ZnO/GO) nanohybrids using ultrasonication/hydrothermal approach. The produced nanohybrids were tested in heterogeneous photocatalytic degradation of methylene blue dye (MB) under visible light illumination and in-situ ultrasonication. The zinc oxide incorporated carbon nanotubes nanohybrid having about 70 wt% of ZnO (ZnO(70)/CNT) showed marked visible light photocatalytic activity enhancement for MB degradation (99%, 0.5 g/L catalyst, 0.015 min(-1)) compared to the rest of the nanohybrids. The performance of MB degradation using ZnO(70)/CNT nanohybrid was even enhanced during employing the dual sonophotocatalysis approach achieving a rate constant of 0.019 min(-1). This arises from the structural advantages at the ZnO(70)/CNT interface by which an improvement in electronic conductivity, facile electron transfer, charge carriers separation and increased oxygen vacancies were thoroughly achieved. This was highly ascertained via the catalysts characterization performed via many physiochemical techniques including XRD, TEM-SAED, FTIR, UV-Vis diffuse reflectance, and electrical conductivity, IPCE, PL and EIS. The scavenger studies of the photocatalytic and sonophotocatalytic processes of the MB degradation using ZnO(70)/CNT illustrate the importance of center dot OH (followed by an electron) and holes (followed by center dot OH), respectively proposing the importance of direct and indirect production of center dot OH; as a strong oxidizing moiety.
机译:使用超声/水热方法将具有不同重量比的氧化锌(ZnO)纳米微晶掺入碳纳米管(ZnO / CNTs)或氧化石墨烯(ZnO / GO)纳米复合物中。在可见光照射和原位超声作用下,对产生的纳米杂化物进行了亚甲基蓝染料(MB)的异质光催化降解测试。与大约70 wt%的ZnO(ZnO(70)/ CNT)并入氧化锌的碳纳米管纳米杂化物显示出显着的可见光对MB降解的光催化活性增强(99%,0.5 g / L催化剂,0.015 min(-1))其余的纳米杂交体。使用ZnO(70)/ CNT纳米杂化物的MB降解性能甚至在采用双声光催化方法期间得到了增强,达到了0.019 min(-1)的速率常数。这是由于ZnO(70)/ CNT界面处的结构优势所致,通过这些优势,可以彻底实现电子导电性,便捷的电子传输,电荷载流子分离和增加的氧空位的改善。通过多种X射线,TEM-SAED,FTIR,UV-Vis漫反射率以及电导率,IPCE,PL和EIS等多种物理化学技术对催化剂进行表征,可以高度确定这一点。使用ZnO(70)/ CNT进行MB降解的光催化和声光催化过程的清除剂研究表明,中心点OH(紧随电子之后)和空穴(紧随中心点OH之后)的重要性分别提出了直接和间接的重要性。间接产生中心点OH;作为强氧化部分。

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