A green sol-gel route to Fe3O4@TiO2−CuO photocatalysts with structural stability, visible-light activity, and magnetic recoverability
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In this work, we present the synthesis of a multifunctional
Fe3O4@TiO2−CuO photocatalyst, integrating Magonia pubescens plant
extract and urea-assisted pH modulation. The as-prepared composite
exhibits outstanding visible-light photocatalytic performance, achieving
75% degradation of rhodamine B (RhB, 15 ppm) after 5 h under 100 W
LED irradiation and retaining more than 45% activity across four reuse
cycles enabled by simple magnetic recovery. Notably, urea-assisted
synthesis reduces iron leaching by ∼50%, preserving magnetic integrity
and enabling efficient catalyst separation. Comprehensive structural,
morphological, and surface analyses (TEM, XRD, XPS, XRF, VSM, ICP,
GC−MS) confirm the formation of a robust, magnetically recoverable
hybrid with a narrowed band gap of 1.65 eV and enhanced stability.
GC−MS analysis revealed progressive mineralization of RhB into lowmolecular-weight intermediates.
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STELZER, Gabriel Bardella et al. A green sol-gel route to Fe3O4@TiO2−CuO photocatalysts with structural stability, visible-light activity, and magnetic recoverability. ACS Omega, Washington, v. 11, n. 10, p. 15942–15955, 2026. DOI: 10.1021/acsomega.5c09939. Disponível em: https://pubs.acs.org/acsodf/article/11/10/15942/5078596/A-Green-Sol-Gel-Route-to-Fe3O4-TiO2-CuO. Acesso em: 31 ago.