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Binaphthyl mediated low temperature synthesis of carbon nitride photocatalyst for photocatalytic hydrogen evolution

MPG-Autoren
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Żółtowska,  Sonia
Paolo Giusto, Kolloidchemie, Max Planck Institute of Colloids and Interfaces, Max Planck Society;

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Giusto,  Paolo       
Paolo Giusto, Kolloidchemie, Max Planck Institute of Colloids and Interfaces, Max Planck Society;

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Zitation

Baluchová, S., Żółtowska, S., Giusto, P., & Kumru, B. (2024). Binaphthyl mediated low temperature synthesis of carbon nitride photocatalyst for photocatalytic hydrogen evolution. ChemSusChem, e202400618. doi:10.1002/cssc.202400618.


Zitierlink: https://hdl.handle.net/21.11116/0000-000F-62D8-F
Zusammenfassung
Metal-free graphitic carbon nitrides are on the rise as polymer photocatalysts under visible light illumination, taking shares in a range of promising photocatalytic reactions, including water splitting. Their simple synthesis and facile structural modification afford them exceptional tunability, enabling the creation of photocatalysts with distinct properties. While their metal-free nature marks a significant step towards environmental sustainability, the high energy consumption required to produce carbon nitride photocatalysts remains a substantial barrier to their widespread adoption. Furthermore, the process of condensation at approximately 550°C typically results in solid yields of less than 15%, significantly challenging their economic viability. Here, we report on lowering manufacturing conditions of carbon nitride photocatalysts whilst enhancing photocatalytic activity by introducing binaphthyl diamine as a structural mediator. At 450°C in 2 hours, carbon nitride photocatalyst shows a lower bandgap and enables visible light induced hydrogen evolution (194 µmol h-1) comparable to benchmark carbon nitride photocatalysts.