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September 10, 2025Science56 citations

Photochemical H 2 dissociation for nearly quantitative CO 2 reduction to ethylene

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PJPing JinPGPu GuoNLNengchao Luo

Key Points

  • The process achieves CO2 reduction to ethylene with over 99% yield, indicating high efficiency of the reaction.
  • Irradiating gold-titanium dioxide at 365 nanometers enhances heterolytic H2 dissociation at ambient temperature.
  • Cascading photocatalytic reactions produce ethylene from ethane, sustained over 1500 hours during irradiation.
  • Light-induced modifications of gold nanoparticles with titanium oxide layer enhance the reaction efficiency.

Abstract

Producing olefins by carbon dioxide (CO 2 ) hydrogenation is a long-standing goal. The usual products are multicarbon mixtures because the critical step of heterolytic hydrogen (H 2 ) dissociation at high temperatures complicates selectivity control. In this study, we report that irradiating gold–titanium dioxide at 365 nanometers induces heterolytic H 2 dissociation at ambient temperature. This process likely relies on interfacial electric dipoles from photogenerated electrons and holes situated on the metallic gold nanoparticles and interfacial gold–oxygen–titanium scaffolds. The heterolytic H 2 dissociation is further promoted by light-induced coating of gold nanoparticles with a titanium oxide layer. The resulting nucleophilic hydrogen species reduce CO 2 to ethane in >99% yield under light irradiation in a flow apparatus. Furthermore, cascading with a subsequent photocatalytic ethane dehydrogenation generates ethylene in >99% yield over 1500 hours of irradiation.

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Cite This Study

Jin et al. (2025) studied this question.

synapsesocial.com/papers/68c18f329b7b07f3a06155echttps://doi.org/10.1126/science.adq3445
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