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一种新型的BiOBr/CAU-17复合材料,在可见光下对染料降解和四环素抗生素去除具有增强的光催化性能。

A Novel BiOBr/CAU-17 Composite with Enhanced Photo-Catalytic Performance for Dye Degradation and Removal of Tetracycline Antibiotic Under Visible Light.

作者信息

Akhtar Mansoor, Ullah Khan Shifa, Mustafa Ghulam, Ahmad Muhammad, Ahamad Tansir

机构信息

College of Civil and Transportation Engineering, Shenzhen University, Shenzhen, Guangdong, 518060, P. R. China.

Institute for Advanced Study, Shenzhen University, Shenzhen, Guangdong, 518060, P. R. China.

出版信息

ChemistryOpen. 2025 Jan;14(1):e202400195. doi: 10.1002/open.202400195. Epub 2024 Oct 23.

Abstract

In order to improve the low specific surface area and high recombinant light generation carriers of BiOBr, loading BiOBr onto suitable Metal Organic Frameworks (MOFs) is an effective strategy to unleash its efficient visible light response and intrinsic catalytic activity. In this study, using classic MOF CAU-17 as a precursor, using a straightforward co-precipitation technique, four BiOBr/CAU-17 composites with distinct MOF contents values BCAU-1, BCAU-2, BC, AU-3, and BCAU-4 were created, and their photo-catalytic characteristics were examined. The BCAU-2 composite exhibited much higher photo-catalytic degradation efficiency for Rhodamine B (RhB) and Tetracycline (TC) than the pristine materials, counter compositions, and early reported materials. XRD, SEM, TEM, XPS, and EDX results revealed the strong synergistic photo-catalytic effect of BiOBr and CAU-17. The photocatalytic degradation of TC was significantly enhanced by the BiOBr bimetal modification, with the 2 wt.% BiOBr/CAU-17 nanocomposite achieving an 87.2 % degradation of TC and 82 % Total Organic Carbon (TOC) removal within 60 min. The high photo-degradation efficiency of BCAU-2 composite should be attributed to the efficient transfer of photo-generated carriers at interfaces and the synergistic effect between BiOBr/CAU-17. Furthermore, the experiments on the capture of the active species proved that the main active free radicals involved in the degradation of RhB and TC are attributed to the photo-induced holes h and ⋅ O under visible light. The catalyst's efficacy is corroborated by the outcomes of photoluminescence spectroscopy and photo current response. This study offers a new understanding for the design of green synthesis schemes for photo-catalytic dye degradation and removal of certain antibiotics from the aquatic environment.

摘要

为了改善溴氧化铋(BiOBr)低比表面积和高重组光生载流子的问题,将BiOBr负载到合适的金属有机框架(MOF)上是释放其高效可见光响应和固有催化活性的有效策略。在本研究中,以经典MOF CAU-17为前驱体,采用简单的共沉淀技术,制备了四种具有不同MOF含量值的BiOBr/CAU-17复合材料BCAU-1、BCAU-2、BCAU-3和BCAU-4,并对其光催化特性进行了研究。BCAU-2复合材料对罗丹明B(RhB)和四环素(TC)的光催化降解效率远高于原始材料、对照组合物和早期报道的材料。X射线衍射(XRD)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)、X射线光电子能谱(XPS)和能谱分析(EDX)结果揭示了BiOBr和CAU-17之间强烈的协同光催化效应。BiOBr双金属修饰显著增强了TC的光催化降解,2 wt.%的BiOBr/CAU-17纳米复合材料在60分钟内实现了87.2%的TC降解和82%的总有机碳(TOC)去除。BCAU-2复合材料的高光降解效率应归因于界面处光生载流子的有效转移以及BiOBr/CAU-17之间的协同效应。此外,活性物种捕获实验证明,可见光下RhB和TC降解过程中涉及的主要活性自由基归因于光生空穴h⁺和·O₂⁻。光致发光光谱和光电流响应结果证实了该催化剂的有效性。本研究为光催化染料降解及从水环境中去除某些抗生素的绿色合成方案设计提供了新的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e485/11726658/b27f28f6f189/OPEN-14-e202400195-g009.jpg

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