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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Enhanced photocatalytic performance of BiOBr/NH2-MIL-125(Ti) composite for dye degradation under visible light
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Enhanced photocatalytic performance of BiOBr/NH2-MIL-125(Ti) composite for dye degradation under visible light

机译:BiOBr / NH2-MIL-125(Ti)复合材料在可见光下增强的光催化降解染料性能

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摘要

Metal-organic frameworks (MOFs) are considered as suitable materials for various applications in the area of photocatalysis. On the other hand, 2D BiOBr materials are efficient for the photodegradation of organic dyes under visible light illumination. In this work, BiOBr/NH2-MIL-125(Ti) composite photocatalysts with different NH2-MIL-125(Ti) content were prepared by incorporating NH2-MIL-125(Ti) with BiOBr using a co-precipitation method. A series of characterizations confirmed the strong synergistic effect between BiOBr and NH2-MIL-125(Ti). In rhodamine B (RhB) degradation experiments, the composite photocatalyst with a mass percent of 7 wt% NH2-MIL-125(Ti) exhibited an improved photocatalytic activity compared to pristine BiOBr and NH2-MIL-125(Ti). Furthermore, the enhanced photocatalytic performance under visible light illumination could be attributed to the Ti3+-Ti4+ intervalence electron transfer and synergistic effect between NH2-MIL-125(Ti) and BiOBr, and also resulted in a separation efficiency of photo-generated electron-hole pairs during the photocatalytic reaction. This study can open up numerous opportunities for the development of various MOF-based visible light photocatalysts when combined with 2D bismuth oxyhalide materials for applications in environmental cleaning.
机译:金属有机骨架(MOF)被认为是光催化领域中各种应用的合适材料。另一方面,二维BiOBr材料对于可见光照射下有机染料的光降解有效。在这项工作中,通过共沉淀法将NH2-MIL-125(Ti)与BiOBr掺入,制备了具有不同NH2-MIL-125(Ti)含量的BiOBr / NH2-MIL-125(Ti)复合光催化剂。一系列表征证实了BiOBr与NH2-MIL-125(Ti)之间的强协同作用。在罗丹明B(RhB)降解实验中,与原始BiOBr和NH2-MIL-125(Ti)相比,质量百分比为7%(重量)的NH2-MIL-125(Ti)的复合光催化剂表现出改善的光催化活性。此外,可见光照射下增强的光催化性能可以归因于Ti3 + -Ti4 +间隔电子转移以及NH2-MIL-125(Ti)与BiOBr之间的协同作用,并且还导致了光生电子-空穴的分离效率对在光催化反应期间。当将2D卤氧化铋铋材料用于环境清洁时,这项研究可以为开发各种基于MOF的可见光光催化剂提供许多机会。

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