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A photocatalytic redox cycle over a polyimide catalyst drives efficient solar-to-HO conversion. | LitMetric

Circumventing the conventional two-electron oxygen reduction pathway remains a great problem in enhancing the efficiency of HO photosynthesis. A promising approach to achieve outstanding photocatalytic activity involves the utilization of redox intermediates. Here, we engineer a polyimide aerogel photocatalyst with photoreductive carbonyl groups for non-sacrificial HO production. Under photoexcitation, carbonyl groups on the photocatalyst surface are reduced, forming an anion radical intermediate. The produced intermediate is oxidized by O to produce HO and subsequently restores the carbonyl group. The high catalytic efficiency is ascribed to a photocatalytic redox cycle mediated by the radical anion, which not only promotes oxygen adsorption but also lowers the energy barrier of O reduction reaction for HO generation. An apparent quantum yield of 14.28% at 420 ± 10 nm with a solar-to-chemical conversion efficiency of 0.92% is achieved. Moreover, we demonstrate that a mere 0.5 m self-supported polyimide aerogel exposed to natural sunlight for 6 h yields significant HO production of 34.3 mmol m.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11535368PMC
http://dx.doi.org/10.1038/s41467-024-49663-6DOI Listing

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