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Electrochemically Synthesized Anthraquinone-Diphenylamine Polymer Photocatalyst for Enhanced Hydrogen Peroxide
Shiladitya Roy1, Bubun Nayak1, Devendra Mayurdhwaj Sanke2
1Department of Chemical Sciences and Centre for Advanced Functional Materials, Indian Institute of Science Education and Research (IISER) Kolkata, Nadia, West Bengal, India.
None:
The photochemical method is a promising approach for H2O2 production, requiring only sunlight and water. Electropolymerization and the use of the resulting electrode-supported DA polymers for photocatalytic H2O2 generation represent an attractive pathway for harvesting light energy. In this study, we synthesized the D-A polymer poly(2,6-bis(diphenylamino)anthraquinone) via two approaches: an electrochemical route (p-AQDPA/EP) and FeCl3-mediated chemical polymerization (p-AQDPA/CP). Both polymers show extended absorption up to 800 nm. The photocatalytic activity of p-AQDPA/EP and p-AQDPA/CP was examined towards H2O2 production. The p-AQDPA/EP efficiently reduces molecular oxygen and produces H2O2 in a neutral aqueous medium at a rate up to 6128 µmol g-1 h-1 under light irradiation (λ ≥ 400 nm) without any sacrificial agents. The p-AQDPA/EP photocatalyst demonstrated higher activity of H2O2 generation as compared to p-AQDPA/CP, attributed to its lower charge-transfer resistance (electrochemical impedance spectroscopy (EIS)), higher photocurrent, reduced photoluminescence intensity, and longer average lifetime relative to p-AQDPA/CP. These results indicate a higher concentration of surface charge carriers and more efficient charge transfer. The catalyst reduces oxygen through a direct two-electron oxygen reduction pathway. The metal catalyst-free synthesis of electropolymers offers a sustainable method to create polymeric photocatalysts for H2O2 production.
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