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Constructing of Z-scheme 3D g-C_3N_4-ZnO@graphene aerogel heterojunctions for high-efficient adsorption and photodegradation of organic pollutants

机译:用于高效吸附和光降解有机污染物的Z型3D g-C_3N_4-ZnO @石墨烯气凝胶异质结的构建

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Adsorption and photocatalytic degradation are effective strategies to purify the wastewater caused by organic dyes. In this study, graphitic carbon nitride (g-C3N4) powders are prepared from melamine with a thermal decomposition method, which are applied to synthesize the direct Z-scheme g-C3N4-ZnO@graphene aerogel (g-C3N4-ZnO@GA) heterojunctions with a hydrothermal self-assembly combined with freeze-drying. As adsorbents and photocatalysts, the heterojunctions exhibit superior adsorption capacity and catalytic activity for the elimination of organic pollutants irradiated by UV and visible light. Among all the materials, g-C3N4-ZnO@GA(30%) displays the best purification efficiencies of rhodamine B (RhB) under both UV and visible light illumination, reaching 81.0% and 82.7%, respectively, because of its hierarchical porous structure and the synergistic effect among the components. More importantly, g-C3N4-ZnO@GA(30%) possesses good reusability, which can keep 87.1% of the initial activity after four cycles. What's more, the heterojunctions also demonstrate high removal efficiency for other organic dyes, such as methyl orange (MO), demonstrating their promising application in environmental remediation. Finally, based on the experimental investigations, a reasonable photocatalytic mechanism is proposed and analyzed. The present work provides a promising way to construct the direct Z-scheme porous heterojunctions for elimination of environmental pollutants.
机译:吸附和光催化降解是净化由有机染料引起的废水的有效策略。在这项研究中,使用三聚氰胺通过热分解法制备石墨氮化碳(g-C3N4)粉末,将其用于合成直接Z方案g-C3N4-ZnO @石墨烯气凝胶(g-C3N4-ZnO @ GA)具有热液自组装和冷冻干燥的异质结。作为吸附剂和光催化剂,异质结具有优异的吸附能力和催化活性,可消除紫外线和可见光辐射的有机污染物。在所有材料中,g-C3N4-ZnO @ GA(30%)在紫外和可见光照射下显示出最好的若丹明B(RhB)净化效率,由于其分层的多孔结构,分别达到了81.0%和82.7%。以及各组件之间的协同效应。更重要的是,g-C3N4-ZnO @ GA(30%)具有良好的可重用性,在四个循环后可以保持87.1%的初始活性。此外,异质结还显示出对其他有机染料(例如甲基橙(MO))的高去除效率,证明了它们在环境修复中的应用前景广阔。最后,在实验研究的基础上,提出并分析了合理的光催化机理。目前的工作提供了一种有前途的方式来构建直接Z型多孔异质结以消除环境污染物。

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