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February 16, 2026npj Clean Water4 citationsOpen Access

Aluminum nanoparticle enhanced TiO2 photocatalysis of organic pollutants under solar and UV-B irradiation

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SWSaadia WasimSLStephanie K. Loeb

Key Points

  • The aim is to enhance TiO2 photocatalysis for organic pollutants using aluminum nanoparticles under solar light.
  • Used aluminum nanoparticle suspension to improve TiO2 efficiency
  • Characterized synthesized Al/TiO2 heterostructures for photocatalytic properties
  • Tested with dye amaranth for pollutant degradation
  • Al/TiO2 degraded amaranth 60% faster than P25 TiO2
  • The heterostructure showed stability over repeated cycles
  • Demonstrated improved light absorption and plasmon resonance

Abstract

Abstract Photocatalytic water treatment offers a sustainable method for removing organic micropollutants but is often limited by low efficiency and complexity. We report a plasmonic-photocatalytic heterostructure combining aluminum (Al) nanoparticles with titanium dioxide (TiO 2 ) for contaminant degradation under solar light without external oxidants or pH adjustment. Using an organic colloidal Al nanoparticle suspension, this approach enhances TiO 2 photocatalysis through improved light absorption, plasmon resonance, and contaminant adsorption. The low-cost Al/TiO 2 heterostructure provides light-harvesting benefits comparable to other noble metal heterostructures (Au/TiO 2 and Ag/TiO 2 ), offering a sustainable alternative. Synthesized via an organic solvent method and ligand modification, the heterostructures were characterized for charge, size, bandgap, and photocatalytic efficiency. A cysteine-modified Al/TiO 2 showed the best performance, degrading the dye amaranth 60% faster than P25 TiO 2 and remaining stable over repeated cycles, underscoring its potential for integration into small-scale, solar-driven water treatment systems.

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Cite This Study

Wasim et al. (2026) studied this question.

synapsesocial.com/papers/6992652ceb1f82dc367a0f65https://doi.org/10.1038/s41545-026-00560-z
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