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Interface-engineered γ/α-hematite homojunction with low contact barrier for boosted photocatalytic peroxymonosulfate activation.

Created on 02 Sep 2026

Authors

Xiaobin Hao, Zhixiong Yang, Wei Wang, Juyuan Xing, Guoliang Tian, Niannian Yuan, Nianhong Wan, Yuan Li, Gaoke Zhang

Published in

Journal of environmental sciences (China). Volume 168. Pages 61-71. Epub Dec 31, 2025.

Abstract

Although iron oxide-based catalysts have drawn much attention as eco-friendly materials for photocatalytic peroxymonosulfate (PMS) activation, their catalytic activity remains constrained by inefficient charge separation. Herein, a γ/α-phase hematite (Fe2O3) homojunction with a low contact barrier was developed, which showed efficient photogenerated charge separation and very highly catalytic activity for PMS activation under light irradiation. The optimized γ/α-phase hematite homojunction (γ/α-500) catalyst activating PMS achieved a superior metronidazole degradation rate of 0.021 min-1 under light irradiation, which was 1.90 and 2.63 times higher than those of single-phase γ-Fe2O3 and α-Fe2O3, respectively. Beyond high activity, γ/α-500 maintained robust performance across a wide pH window (3-11), showed strong tolerance toward anion interference, and delivered stable reusability. Characterizations and theory calculations indicate that the homojunction-induced built-in electric field greatly facilitated charge separation, and enhanced PMS adsorption and reduced activation energy. This work not only demonstrates the design of a γ/α-phase Fe2O3 homojunction with an ultralow energy barrier for PMS activation but also offers a promising strategy for tailoring iron oxide-based catalysts toward efficient and sustainable remediation of emerging contaminants.

PMID:
42680419
Bibliographic data and abstract were imported from PubMed on 02 Sep 2026.

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