首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Highly stable heterostructured Ag-AgBr/TiO2 composite: a bifunctional visible-light active photocatalyst for destruction of ibuprofen and bacteria
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Highly stable heterostructured Ag-AgBr/TiO2 composite: a bifunctional visible-light active photocatalyst for destruction of ibuprofen and bacteria

机译:高度稳定的异质结构Ag-AgBr / TiO2复合材料:双功能可见光活性光催化剂,可破坏布洛芬和细菌

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摘要

A bifunctional visible-light photocatalyst Ag-AgBr/TiO2 was synthesized by a facile one-pot method. The three-component composite exhibited much superior visible-light photocatalytic activities for ibuprofen (IBP) degradation and mineralization as compared to single-component (TiO2) and two-component (Ag/TiO2, Ag-AgBr) systems, as well as the conventional Ag-AgBr/P25. After 6 h of white LED irradiation, 81% of organic carbon could be mineralized along with decreased aromaticity and toxicity of the IBP degradation products. Meanwhile, the synthesized Ag-AgBr/TiO2 exhibited much stronger antibacterial activities than TiO2 and conventional Ag-AgBr/P25 under white LED irradiation. More interestingly, the Ag-AgBr/TiO2 had novel antibacterial activities against E. coli in the dark as compared to other Ag-AgBr/semiconductor photocatalysts that have been reported. For the first time, the action spectrum of Ag-AgBr/TiO2 was investigated using different colors of LED to elucidate the roles of Ag nanoparticles and AgBr in its visible-light photocatalytic activity. It reveals that both AgBr and Ag nanoparticles were photoactive species contributing to the high photocatalytic performance. Among the various oxidative species (h~+, OH, O2~(.-) and ~1O2), O2~(.-) was the predominant species involved in IBP degradation upon the Ag-AgBr/TiO2 under white LED irradiation. The visible-light photocatalytic mechanism of Ag-AgBr/TiO2 and factor contributing to its high photostability in water are proposed.
机译:通过简便的一锅法合成了一种双功能可见光光催化剂Ag-AgBr / TiO2。与单组分(TiO2)和二组分(Ag / TiO2,Ag-AgBr)体系以及常规体系相比,该三组分复合物对布洛芬(IBP)降解和矿化具有更优异的可见光催化活性。 Ag-AgBr / P25。白光LED照射6小时后,可能会矿化81%的有机碳,同时降低IBP降解产物的芳香性和毒性。同时,在白光LED照射下,合成的Ag-AgBr / TiO2具有比TiO2和常规Ag-AgBr / P25强得多的抗菌活性。更有趣的是,与已报道的其他Ag-AgBr /半导体光催化剂相比,Ag-AgBr / TiO2在黑暗中对大肠杆菌具有新颖的抗菌活性。首次使用不同颜色的LED研究了Ag-AgBr / TiO2的作用谱,以阐明Ag纳米颗粒和AgBr在可见光光催化活性中的作用。结果表明,AgBr和Ag纳米粒子都是光活性物质,有助于实现高光催化性能。在各种氧化性物质(h〜+,OH,O2〜(.-)和〜1O2)中,O2〜(.-)是白光LED照射下Ag-AgBr / TiO2上IBP降解的主要物质。提出了Ag-AgBr / TiO2的可见光光催化机理及影响其在水中高光稳定性的因素。

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