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March 29, 2026Journal of Industrial and Engineering Chemistry3 citationsOpen Access

Reduction reactions by heterogeneous photocatalysis: From CO2 valorization to environmental remediation and valuable compounds synthesis

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MNMaya NobatovaUniversity of PalermoMUMuhammad UmairUniversity of PalermoLPLeonardo PalmisanoUniversity of Palermo

Key Points

  • The aim is to explore how modifying photocatalysts can enhance photoreduction reactions for strategic product synthesis.
  • Examined various photocatalysts and reaction conditions to optimize photocatalytic efficiency.
  • Investigated gas–solid and liquid–solid systems for CO2 reduction.
  • Analyzed the transformation of nitro compounds and the reduction of chromium species.
  • Discussed the implications of H2 production for clean energy.
  • Successful reduction of CO2 to valuable products under optimized conditions.
  • Transformation of Cr(VI) to the less toxic Cr(III) was achieved.
  • High yields of anilines from nitrobenzenes were observed.
  • Demonstrated concurrent oxidation and reduction processes in photocatalysis.

Abstract

After a brief general presentation of strategies aimed at improving the efficiency of the photocatalytic process by modifying the photocatalyst and/or experimental reaction conditions, the attention will be focused on different photoreduction reactions where the reduction products are often of strategic and/or economic importance. These include the reduction of CO 2 in both the gas–solid and liquid–solid systems, the production of H 2 with its potential implications for clean energy generation (only briefly, given the vastness of the topic, which deserves a separate discussion), the reduction of NO 3 – to NO 2 – , nitrobenzenes to the corresponding anilines, and 4-nitrophenol to 4-aminophenol. Reactions that produce a less toxic and polluting product, such as the transformation of Cr(VI) to Cr(III), will also be highlighted. Notably, we emphasized the convenience in the contemporary occurrence of both oxidation and reduction processes by exploiting holes and electrons generated following the photocatalyst’s irradiation to valorize pollutants/waste products to valuable compounds.

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Cite This Study

Nobatova et al. (2026) studied this question.

synapsesocial.com/papers/69c8c384de0f0f753b39e64chttps://doi.org/10.1016/j.jiec.2026.03.020
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