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ChemistryOpen· 2026Q2

Cerium‐Modified TiO 2 Nanomaterials Derived From Upcycled Coffee Ground Waste for Photocatalytic Oxidation and Hydrogen Production via Photoreforming

Narimene Aoun, Elisa Isabel Garcia-Lopez, Bartolomeo Megna, C. F. Aliotta et al.

Short summary

Upcycled coffee grounds were used as a template to create Ce-loaded TiO2 photocatalysts with hierarchical porosity, improving activity in hydrogen production from ethanol photoreforming, 2-propanol oxidation, and 5-HMF oxidation.

AI-generated from the title and abstract; the full text is not read.

Key points

  • Spent coffee grounds were used as a bio-derived template for synthesizing Ce-loaded TiO2 photocatalysts.
  • The templating method resulted in hierarchical porosity and improved Ce-Ti precursor contact.
  • The Ce-loaded TiO2 photocatalysts were active in hydrogen production from ethanol photoreforming.
  • The nanomaterials also showed activity in 2-propanol oxidation and 5-HMF oxidation.

AI-generated from the title and abstract; the full text is not read.

Abstract

The valorization of spent coffee ground wastes to prepare advanced materials offers a promising pathway toward sustainable materials engineering. In this work, spent coffee grounds were valorized by their utilization as a template for the synthesis of Ce‐loaded TiO 2 to be used as photocatalysts. The synthesis in the presence of the bio‐derived sacrificial template in the absence of solvent promote a hierarchical porosity and surface area and an intimate contact between Ce and Ti precursors to improve the photocatalytic activity of the obtained composite material. Pure TiO 2 is made up of nanoparticles that organize into fairly uniform spherical agglomerates of ca. 1 μm. When Ce is introduced, this ordered structure gradually changes giving rise to less regular larger aggregates, and at higher loadings (5% Ce) the spherical morphology is no longer observed. In all cases a mesoporous structure is present. The activity of the obtained solids as photocatalysts was tested in three different reactions: (i) the photo reforming of ethanol in aqueous suspension of the photocatalysts in the absence of oxygen, to obtain hydrogen; (ii) the 2‐propanol oxidation in gas–solid regime, and (iii) the 5‑hydroxymethylfurfural (5‑HMF) oxidation in aqueous suspension of the solids.

The authors' abstract, as published at the source. ChemistryOpen, 2026 · DOI ↗

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Field: Renewable Energy, Sustainability and the Environment

Renewable Energy, Sustainability and the EnvironmentEnergy