首页> 外文期刊>Applied Surface Science >Construction of 2D/2D/2D rGO/p-C_3N_4/Cu_3Mo_2O_9 heterostructure as an efficient catalytic platform for cascade photo-degradation and photoelectrochemical activity
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Construction of 2D/2D/2D rGO/p-C_3N_4/Cu_3Mo_2O_9 heterostructure as an efficient catalytic platform for cascade photo-degradation and photoelectrochemical activity

机译:构建2D / 2D / 2D rGO / p-C_3N_4 / Cu_3Mo_2O_9异质结构作为级联光降解和光电化学活性的有效催化平台

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摘要

Well-designed heterostructure photocatalysts with effective interfacial contacts have attracted significant attention, owing to their enhanced visible-light absorption and optimal charge separation efficiency. Herein, novel visible-light-responsive heterostructure photocatalysts composed of reduced graphene oxide (rGO)/protonated g-C3N4 (p-CN)/Cu3Mo2O9 (CMO) were constructed through a facile hydrothermal method. In particular, the ternary composite with 20 wt% of CMO content (rGO/p-CN/CMO-20) was optimized as an efficient catalyst for tetracycline (TC) degradation. The TC degradation rate of the rGO/p-CN/CMO-20 catalyst was found to be similar to 41, 15, 22, 7, and 14 times higher than those of rGO, p-CN, CMO, p-CN/CMO-20, and rGO/CMO-20, respectively. The outstanding photocatalytic activity could be attributed to the enhanced visible-light absorption, synergistic effect among the components, high specific surface area, good interfacial contact, efficient separation and transfer of photo-generated charge-carriers as well as good photostability. In addition, reactive radical scavenging and band edge position analyses provided evidence for a possible mechanism of the enhanced photocatalytic activity exhibited by rGO/p-CN/CMO-20. Mineralization with 60% total organic carbon reduction was achieved during the 60 min treatment of the optimized sample. The kinetic analysis revealed that the photocatalytic degradation obeyed the Langmuir-Hinshelwood kinetic model. The primary intermediates were identified through liquid chromatography-mass spectrometry, and a photo-degradation pathway was tentatively proposed. This work will provide new routes for the design and construction of efficient two-dimensional rGO/p-CN-decorated heterostructures and their use in environmental decontamination.
机译:精心设计的具有有效界面接触的异质结构光催化剂由于其增强的可见光吸收和最佳的电荷分离效率而备受关注。在此,通过简便的水热法构建了由氧化石墨烯(rGO)/质子化的g-C3N4(p-CN)/ Cu3Mo2O9(CMO)组成的新型可见光响应异质结构光催化剂。特别地,具有20wt%的CMO含量(rGO / p-CN / CMO-20)的三元复合物被优化为四环素(TC)降解的有效催化剂。发现rGO / p-CN / CMO-20催化剂的TC降解速率比rGO,p-CN,CMO,p-CN / CMO的TC降解速率高41、15、22、7和14倍-20和rGO / CMO-20。杰出的光催化活性可归因于增强的可见光吸收,各组分之间的协同效应,高比表面积,良好的界面接触,光生电荷载体的有效分离和转移以及良好的光稳定性。此外,反应性自由基清除和能带边缘位置分析为rGO / p-CN / CMO-20表现出增强的光催化活性的可能机理提供了证据。在优化样品的60分钟处理过程中,矿物质的总有机碳减少了60%。动力学分析表明,光催化降解服从Langmuir-Hinshelwood动力学模型。通过液相色谱-质谱法鉴定了主要中间体,并初步提出了光降解途径。这项工作将为设计和构建高效的二维rGO / p-CN装饰异质结构及其在环境净化中的应用提供新的途径。

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