Revealing the primary role of the V4+/V5+ cycle in InVO4 catalysts for promoting the photo-Fenton reaction†
Abstract
Surface oxygen and metal defects can promote the performance of photocatalysts significantly, but their role in the activation of hydrogen peroxide (H2O2) for pollutant degradation is not clear. Herein, the surface oxygen vacancies (VO) and vanadium vacancies (VV: V4+/V5+) of InVO4 catalysts were adjusted using different surfactants. Among them, a cationic surfactant with a hydrophilic head of quaternary ammonium ions facilitated the formation of surface vanadium vacancies (V4+/V5+) on the InVO4 crystal. This VV-dominated InVO4 exhibited the optimal degradation rate of rhodamine B and microcystin-LR (MC-LR) with H2O2 (0.045 M) at neutral pH under visible-light irradiation, which was ∼8.2-times versus 3.2-times larger than that of the Vo-dominated InVO4 system. The cycle of V4+/V5+ decomposed H2O2 to yield hydroxyl radicals (·OH) and superoxide radicals (·O2−) continuously, which degraded organic pollutants efficiently. This study provides insights into the primary role of the V4+/V5+ cycle in InVO4 catalysts for promoting the photo-Fenton reaction via adjuration of surfactants.
- This article is part of the themed collection: Advanced Materials