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Enhanced Interfacial Electron Transfer by Asymmetric Cu‐O<sub>v</sub>‐In Sites on In<sub>2</sub>O<sub>3</sub> for Efficient Peroxymonosulfate Activation

167

Citations

50

References

2023

Year

Abstract

Enhancing the peroxymonosulfate (PMS) activation efficiency to generate more radicals is vital to promote the Fenton-like reaction activity, however, how to promote the PMS adsorption and accelerate the interfacial electron transfer to boost its activation kinetics remains a great challenge. Herein, we prepared Cu-doped defect-rich In<sub>2</sub> O<sub>3</sub> (Cu-In<sub>2</sub> O<sub>3</sub> /O<sub>v</sub> ) catalysts containing asymmetric Cu-O<sub>v</sub> -In sites for PMS activation in water purification. The intrinsic catalytic activity is that the side-on adsorption configuration of the O-O bond (Cu-O-O-In) at the Cu-O<sub>v</sub> -In sites significantly stretches the O-O bond length. Meanwhile, the Cu-O<sub>v</sub> -In sites increase the electron density near the Fermi energy level, promoting more and faster electron transfer to the O-O bond for generating more SO<sub>4</sub> ⋅<sup>-</sup> and ⋅OH. The degradation rate constant of tetracycline achieved by Cu-In<sub>2</sub> O<sub>3</sub> /O<sub>v</sub> is 31.8 times faster than In<sub>2</sub> O<sub>3</sub> /O<sub>v</sub> , and it shows the possibility of membrane reactor for practical wastewater treatment.

References

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