Hypercrosslinked Polymers as a Photocatalytic Platform for Visible-Light-Driven CO2 Photoreduction Using H2O
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Abstract
The design of robust, high-performance photocatalysts is key for the success of solar fuel production via CO 2 conversion. Herein, we present hypercrosslinked polymer (HCP) photocatalysts for the selective reduction of CO 2 to CO, combining excellent CO 2 sorption capacities, good general stabilities, and low production costs. HCPs are active photocatalysts in the visible light range, significantly out-performing the benchmark material, TiO 2 P25, using only sacrificial H 2 O. We hypothesise that superior H 2 O adsorption capacities led to concentration at photoactive sites, improving photocatalytic conversion rates when compared to sacrificial H 2 . These polymers are an intriguing set of organic photocatalysts, displaying no long-range order or extended pi-conjugation. The as-synthesised networks are the sole photocatalytic component, requiring no co-catalyst doping or photosensitiser, representing a highly versatile and exciting platform for solar-energy conversion.
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- europepmc
- last seen: 2026-05-19T01:45:01.086888+00:00