首页> 外文期刊>Separation and Purification Technology >Solvothermal synthesis of a peony flower-like dual Z-scheme PANI/BiOBr/ZnFe2O4 photocatalyst with excellent photocatalytic redox activity for organic pollutant under visible-light
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Solvothermal synthesis of a peony flower-like dual Z-scheme PANI/BiOBr/ZnFe2O4 photocatalyst with excellent photocatalytic redox activity for organic pollutant under visible-light

机译:牡丹花样的双Z-schreams PANI / BIOBR / ZNFE2O4光催化剂的溶剂热合成,具有优异的光催化氧化还原活性,用于在可见光下的有机污染物

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摘要

In present study, polyaniline/bismuth bromide/zinc ferrite (PANI/BiOBr/ZnFe2O4) was rationally designed and successfully prepared via a facile hydrothermal synthesis method. The crystal structure, chemical composition and morphology of the samples were analyzed by various characterization techniques. The PANI/BiOBr/ZnFe2O4 composite exhibits a higher photocatalytic activity compared with other samples under visible light irradiation. Among 611 samples, the highest degradation efficieney for RhB over 7% PANI/BiOBr/ZnFe2O4 reach 99.26%. Meanwhile, the composite exhibits an excellent catalytic activity for the reduction of nitrobenzene (NB) under visible light, the conversion efficiency can reach 87.1%. Moreover, the ternary composite still maintains a higher photocatalytic activity after three consecutive uses. Additionally, according to PL spectra and electrochemical impedance spectroscopy (EIS), the improved photocatalytic performance of PANI/BiOBr/ZnFe2O4 composite can be attributed to the rapid separation and transfer of electron-hole pairs. Finally, the dual Z-scheme electron transfer mechanism suitable for this system was proposed by UV-vis DRS spectra, M-S curves analysis, ESR spectra and free radical capture experiments. This study provides a new research idea for the design and construction of efficient photocatalysts for organic pollutants and other water treatment problems.
机译:在目前的研究中,通过容易水热合成方法合理设计和成功地制备溴化硅氧烷/铋溴/锌铁素/锌铁素/锌铁素/锌铁素/锌铁素/锌铁素/锌铁素/锌铁素体(PANI / BIOBR / ZnFe2O4)。通过各种表征技术分析样品的晶体结构,化学成分和形态。与可见光照射下的其他样品相比,PANI / BIOBR / ZNFE2O4复合材料表现出更高的光催化活性。在611个样品中,RHB的最高降解效率超过7%PANI / BIOBR / ZNFE2O4达到99.26%。同时,复合材料表现出优异的催化活性,用于在可见光下还原硝基苯(Nb),转化效率可达到87.1%。此外,三元复合材料仍然在连续三种用途后保持更高的光催化活性。另外,根据PL光谱和电化学阻抗谱(EIS),PANI / BIOBR / ZNFE2O4复合材料的改善的光催化性能可归因于电子孔对的快速分离和转移。最后,通过UV-Vis DRS Spectra,M-S曲线分析,ESR谱和自由基捕获实验提出了适用于该系统的双Z方案电子转移机制。本研究为有机污染物和其他水处理问题的高效光催化设计提供了新的研究理念。

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