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Controlled Synthesis of Nitro-Terminated Oligothiophene/Crystallinity-Improved g-C 3 N 4 Heterojunctions for Enhanced Visible-Light Catalytic H 2 Production.

ACS applied materials & interfaces(2023)

Cited 5|Views20
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Abstract
It is highly desired to explore closely contacted polymer semiconductor/g-CN heterojunction photocatalysts with promoted photogenerated-carrier separation and extended visible-light response for efficient visible-light-driven H production. Here, we first synthesized the nitro-terminated oligothiophene (OTh) by the controlled copolymerization of thiophene and 2-nitrothiophene monomers, then constructed the nitro-terminated oligothiophene/crystallinity-improved g-CN (OTh/g-CN) heterojunctions by a grinding-induced combination strategy. The ratio-optimized 20OTh/g-CN shows highly efficient H production activity up to 3.63 mmol h g under visible-light irradiation, with ∼25.9-time enhancement compared to that of g-CN. As verified by time-resolved photoluminescence spectra, surface photovoltage spectra, and the fluorescence spectra related to •OH amounts, the improved photocatalytic activity is due to the promoted photogenerated-carrier transfer and separation in the heterojunctions and the expanded visible-light response. It is also confirmed that the controlled OTh chain length, improved g-CN crystallinity, and tight interface contact dependent on the hydrogen bonds and N···S interactions between OTh and g-CN are reasonable for enhanced photogenerated-carrier separation with the electron transfer from OTh to g-CN. This work illustrates a feasible strategy to construct efficient polymer semiconductor/g-CN heterojunction photocatalysts for solar-light-driven H production.
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Key words
H2 production,charge transfer and separation,crystallinity-improved g-C3N4,nitro-terminated oligothiophene modification,visible-light catalysis
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