Photocatalytic-Fenton synergistic reaction of CuFeO2/Fe2O3 heterostructure for tetracycline hydrochloride degradation
Abstract
The heterogeneous photocatalytic-Fenton synergistic reaction is regarded as a promising technique for organic pollutants degradation due to its efficient utilization of solar energy and high H2O2 activation activity. Herein, a CuFeO2/Fe2O3 heterostructure with Fe3+/Fe2+ and Cu2+/Cu+ double redox couples were fabricated via a hydrothermal process. Compared with the pristine CuFeO2 and Fe2O3, the CuFeO2/Fe2O3 heterostructure displays much-increased photocatalytic-Fenton synergistic reaction activity, with tetracycline hydrochloride (TCH) removal by 97.04?% within 135?min. Meanwhile, the CuFeO2/Fe2O3 heterostructure system exhibits excellent stability and efficiency in degrading TCH across a wide pH range of 2–9. The efficient TCH degradation activity should be mainly ascribed to the characteristics of the built-in redox couples (Fe3+/Fe2+ and Cu2+/Cu+) effectively promote the activation of H2O2, which is highly benefits the formation of more active species. Additionally, theoretical calculations elucidate the establishment of strong built-in electric field at the heterointerface of CuFeO2 and Fe2O3, encouraging the effective separation and transfer of photoinduced electrons and holes. This, in turn, promotes the in-situ recycling of Cu2+ to Cu+ and Fe3+ to Fe2+. This work provides new insights for fabricating novel heterostructure for the effective photocatalytic-Fenton remediation of wastewater containing antibiotic contaminants.