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March 7, 2026ACS Omega2 citationsOpen Access

A Green Sol–Gel Route to Fe 3 O 4 @TiO 2 –CuO Photocatalysts with Structural Stability, Visible–Light Activity, and Magnetic Recoverability

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GSGabriel Bardella StelzerIPIsabella Cristina PrescilioLVLeonardo G. Vasconcelos

Key Points

  • The aim is to develop a stable and efficient photocatalyst for environmental applications using a green synthesis method.
  • Synthesis of Fe3O4@TiO2–CuO using Magonia pubescens extract and urea for pH modulation.
  • Evaluation of photocatalytic activity through degradation tests of rhodamine B under LED irradiation.
  • Assessment of structural and morphological properties using techniques like TEM, XRD, and VSM.
  • Achieved 75% degradation of rhodamine B after 5 hours under visible light.
  • Demonstrated over 45% activity retention after four reuse cycles using magnetic recovery.
  • Reduced iron leaching by approximately 50%, ensuring magnetic integrity.

Abstract

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 low-molecular-weight intermediates.

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Cite This Study

Stelzer et al. (2026) studied this question.

synapsesocial.com/papers/69abc0de5af8044f7a4e9858https://doi.org/10.1021/acsomega.5c09939
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