4.3 Article

Construction of novel ternary Au/LaFeO3/Cu2O composite photocatalysts for RhB degradation via photo-Fenton catalysis

期刊

MATERIALS TECHNOLOGY
卷 36, 期 10, 页码 603-615

出版社

TAYLOR & FRANCIS LTD
DOI: 10.1080/10667857.2020.1782062

关键词

Cu2O polyhedral microspheres; LaFeO(3)nanoparticles; Au nanoparticles; Au; LaFeO3; Cu2O composites; photo-Fenton degradation

资金

  1. National Natural Science Foundation of China [51662027]

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The preparation, characterization, and performance of LaFeO3/Cu2O and Au/LaFeO3/Cu2O composite photocatalysts were studied. It was found that the binary composite photocatalysts have higher efficiency in separating electron/hole pairs, while the ternary composite photocatalysts showed superior performance in photocatalysis and photo-Fenton degradation.
By immobilising LaFeO(3)and Au nanoparticles on the surface of Cu2O polyhedral microspheres, we have prepared novel binary LaFeO3/Cu2O and ternary Au/LaFeO3/Cu2O composite photocatalysts. The as-fabricated composites were systematically investigated by using various characterisation techniques. Photocurrent response and EIS measurements suggest that the composite photocatalysts exhibit an electron/hole pair separation more efficient than bare LaFeO(3)and Cu2O. The photocatalysis and photo-Fenton degradation experiments were carried out by removing RhB from water under simulated sunlight irradiation. The composite photocatalysts are demonstrated to have superior photocatalysis/photo-Fenton degradation performances to bare LaFeO(3)and Cu2O. 20%LaFeO3/Cu2O is determined to be the optimal binary composite photocatalyst. Moreover, the decoration of Au nanoparticles onto the 20%LaFeO3/Cu2O composite can further improve the photocatalysis/photo-Fenton degradation performance. The enhanced photocatalysis and photo-Fenton decomposition mechanisms for the ternary Au/LaFeO3/Cu2O composites were investigated and discussed on the based of the Z-scheme electron transfer process, LSPR of Au nanoparticles and photo-Fenton synergistic effect.

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