Chemical Injuries Research Center, Systems Biology and Poisonings Institute, Baqiyatallah University of Medical Sciences, Tehran, Iran.
Chemical Injuries Research Center, Systems Biology and Poisonings Institute, Baqiyatallah University of Medical Sciences, Tehran, Iran.
J Environ Sci (China). 2020 May;91:222-236. doi: 10.1016/j.jes.2020.01.013. Epub 2020 Feb 5.
Nowadays, widespread researches have been focused on the development of effective photocatalysts to remove pollutants of the aquatic system. In accordance with the universal studies, two new sets of UiO-66@ metal oxide (including ZnO and TiO)/graphene oxide heterojunctions were synthesized for photodegradation of aromatic (tetracycline) and nonaromatic (malathion) pollutants which are challenging cases in the environment. The dosage of the photocatalyst, pH of the solution, the type of metal oxide, and the presence of various scavengers are assayed parameters in this work. In the optimum condition, maximum photodegradation efficiency is achieved in 90 min for tetracycline (81%) and malathion (100%) by the UiO-66@ZnO/graphene oxide. The superior separation of charge carriers by Z-scheme mechanism, excellent electron mobility on layers of graphene oxide and high surface area are factors that enhanced the efficiency. Furthermore, in comparison with pure UiO-66, the band gaps belong to heterojunctions revealed a red shift in the absorption edge, which can be responsible for more expand adsorption of the solar spectrum. Total organic carbon analysis verified the decontamination of these pollutants in the solution. The produced main intermediates during the photocatalytic process were identified and the possible degradation pathway proposed. In general, the superior photocatalytic activity suggests that these designed photocatalysts can be a promising choice for having a clean future.
如今,人们广泛研究开发有效的光催化剂以去除水系统中的污染物。根据普遍的研究,我们合成了两组新的 UiO-66@金属氧化物(包括 ZnO 和 TiO)/氧化石墨烯异质结,用于光降解环境中具有挑战性的芳香族(四环素)和非芳香族(马拉硫磷)污染物。在这项工作中,测定了光催化剂的用量、溶液的 pH 值、金属氧化物的类型以及各种清除剂的存在。在最佳条件下,UiO-66@ZnO/氧化石墨烯对四环素(81%)和马拉硫磷(100%)的最大光降解效率可在 90 分钟内达到。Z 型机制可实现载流子的优异分离,氧化石墨烯层上的优异电子迁移率和高表面积是提高效率的因素。此外,与纯 UiO-66 相比,异质结的带隙显示出吸收边缘的红移,这可以负责更多地扩展太阳能光谱的吸收。总有机碳分析证明了这些污染物在溶液中的净化。确定了光催化过程中产生的主要中间产物,并提出了可能的降解途径。总的来说,优异的光催化活性表明,这些设计的光催化剂可为拥有清洁的未来提供有希望的选择。