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首页> 外文期刊>Environmental Science and Pollution Research >Photodegradation of 2,4-dichlorophenol and rhodamine B over n-type ZnO/p-type BiFeO3 heterojunctions: detailed reaction pathway and mechanism
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Photodegradation of 2,4-dichlorophenol and rhodamine B over n-type ZnO/p-type BiFeO3 heterojunctions: detailed reaction pathway and mechanism

机译:2,4-二氯苯酚和罗达胺B对N型ZnO / p型BifeO3异质结的光降解:详细的反应途径和机理

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The development of new technologies for efficient degradation of pollutant has been an increasing demand in the globe due to the serious environmental issues. Herein, we report n-type ZnO/p-type BiFeO3 composites as highly efficient visible light nanophotocatalysts prepared via a wet chemical solution method. Based on the measurements of (OH)-O-center dot-related fluorescence (FL) spectra, photoluminescence (PL) spectra, photoelectrochemical I-V curves, and electrochemical impedance spectra (EIS), it is demonstrated that the photo-induced charge carrier (electron-hole pairs) in the as-prepared n-type ZnO/p-type BiFeO3 composites with proper amount of the coupled ZnO (10% by mass) exhibits high separation compared with the bare BiFeO3 (BFO) nanoparticles. This is well responsible for the superior visible light photocatalytic performance of the composites for 2,4-dichlorophenol (2,4-DCP) and rhodamine B (RhB) degradation. It is confirmed by means of scavenger test and liquid chromatography-tandem mass spectrometry (LC/MS) analysis of the intermediate products that (OH)-O-center dot is the pre-dominant oxidant involved in the degradation of 2,4-DCP. A detailed reaction pathway for 2,4-dichlorophenol degradation over the amount-optimized ZnO/BFO composite is proposed mainly based on the LC/MS product ions. This work will provide a feasible route to design and develop BFO-based highly efficient visible light-active photocatalysts for environmental purification and could be extended to other visible light-active semiconductor materials.
机译:由于严重的环境问题,污染物有效降解的新技术的开发是全球需求的日益增长。在此,我们将N型ZnO / p型BifeO3复合材料报告为通过湿化学溶液法制备的高效可见光纳米光催化剂。基于(OH)-O-中心点与相关荧光(FL)光谱,光致发光(PL)光谱,光电化学IV曲线和电化学阻抗谱(EIS)的测量值,证明了光诱导的电荷载体(与裸BIFEO3(BFO)纳米颗粒相比,用适量的偶联ZnO(10质量%)的偶联ZnO(10质量%)的ZnO / p型BifeO3复合材料中的电子孔对具有高分离。这对2,4-二氯苯酚(2,4-DCP)和罗丹明B(RHB)降解的复合材料的卓越可见光光催化性能很好。通过清除剂测试和液相色谱 - 串联质谱(LC / MS)分析来证实(OH)-O中心点是参与2,4-DCP的降解所涉及的预优势氧化剂的中间产物。提出了在LC / MS产物离子上提出过量优化的ZnO / BFO复合材料的2,4-二氯苯酚降解的详细反应途径。这项工作将提供可行的设计路线,用于设计和开发基于BFO的高效可见光活性光催化剂,用于环境净化,并且可以扩展到其他可见光活性半导体材料。

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