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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >3D-2D-3D BiOI/porous g-C3N4/graphene hydrogel composite photocatalyst with synergy of adsorption-photocatalysis in static and flow systems
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3D-2D-3D BiOI/porous g-C3N4/graphene hydrogel composite photocatalyst with synergy of adsorption-photocatalysis in static and flow systems

机译:3D-2D-3D生物/多孔G-C3N4 /石墨烯水凝胶复合光催化剂,具有静电和流量系统的吸附 - 光催化协同作用

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摘要

A novel 3D-2D-3D BiOI/porous g-C3N4/graphene hydrogel (BPG) composite photocatalyst was synthesized via a two-step hydrothermal method and shows a synergy of adsorption and photocatalysis. In comparison with bulk g-C3N4, 2D porous g-C3N4 (pCN) exhibited not only shortened diffusion distance for photogenerated carrier transport but also large contact area for rapid interfacial charge separation. Nevertheless, the photocatalytic performance was far from satisfactory due to the poor light harvesting. Incorporating 3D flower-like BiOl with 2D pCN to form a heterojunction was found to be an efficiency way for improving light harvesting, while charge separation efficiency was also enhanced. 3D graphene hydrogel, in which the effective photocatalyst 3D-2D BiOI/pCN heterojunction was homogenously distributed, not only revealed excellent adsorption capability and bulk electron transfer but also provided simplicity of separation and recovery. Consequently, in static system, the degradation efficiency of methylene blue (MB) and the typical antibiotic levofloxacin hydrochloride (LVF) was 7.2 and 2.7 times as high as that for BiOI. In flow system, the pollutants could be constantly degraded without separation with the removal rates about 1.54 and 1.67 times higher than those of BiOI, which kept unchanged for 30 h. The construction of 3D-2D-3D BPG composite combined the excellent adsorption capacity of GH with the photocatalytic activity of BiOI/pCN heterojunction, resulting in a high removal efficiency towards pollutants. This work provided deep insight into design and fabrication of 3D hydrogel composites with excellent synergy of adsorption and photocatalytic properties. (C) 2020 Elsevier B.V. All rights reserved.
机译:采用两步水热法合成了一种新型的3D-2D-3D BiOI/多孔g-C3N4/石墨烯水凝胶(BPG)复合光催化剂,该催化剂具有吸附和光催化的协同作用。与块状g-C3N4相比,2D多孔g-C3N4(pCN)不仅具有缩短的光生载流子传输扩散距离,而且具有大的接触面积,可实现快速的界面电荷分离。然而,由于光收集能力差,光催化性能远不能令人满意。研究发现,将3D花朵状BiOl与2D pCN结合形成异质结是提高光捕获效率的有效途径,同时电荷分离效率也得到了提高。3D石墨烯水凝胶中有效的光催化剂3D-2D BiOI/pCN异质结均匀分布,不仅表现出良好的吸附能力和体电子转移能力,而且提供了简单的分离和回收。因此,在静态系统中,亚甲基蓝(MB)和典型抗生素盐酸左氧氟沙星(LVF)的降解效率分别是BiOI的7.2倍和2.7倍。在流动系统中,污染物可以在不分离的情况下不断降解,其去除率约为BiOI的1.54倍和1.67倍,在30小时内保持不变。3D-2D-3D BPG复合材料的构建将GH的优良吸附能力与BiOI/pCN异质结的光催化活性相结合,从而实现了对污染物的高去除效率。这项工作为三维水凝胶复合材料的设计和制备提供了深入的见解,该复合材料具有良好的吸附和光催化性能。(C) 2020爱思唯尔B.V.版权所有。

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