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Updated: Jul 15, 2026

Reductive Electropolymerization of a Vinyl-containing Poly-pyridyl Complex on Glassy Carbon and Fluorine-doped Tin Oxide Electrodes
Published on: January 30, 2015
Self-supply activation Fenton-like system for water purification using polyethyleneimine-driven electron pumps in
Kaizhou Huang1, Jiajie Xu1, Wei Qu1
1College of Chemistry and Environmental Engineering, Shenzhen University, Shenzhen, China.
Abstract:
A hierarchically structured photocatalyst composite bead (CS-PG0.5%-Fe) was developed in this study through a synergistic electronic modulation strategy, incorporating porphyrin-tailored polymeric carbon nitride (C3N4por), Fe(III) coordination, and polyethylenimine(PEI)-alginate cross-linked matrix to overcome challenges in Fenton-like wastewater treatment. The multi-component architecture was constructed via triple cross-linking treatment, with comprehensive mechanistic analysis employing in-situ characterization, reactive species tracking, and theoretical calculations to reveal the photo-driven H2O2 self-supply and activation processes. PEI acted as an electron pump and proton-relay mediator to enhance C3N4 charge separation, while the cross-linked structure enabled spatially the confined H2O2 activation. With 0.5 % PEI crosslinking identified as the optimal condition in the material fabrication, the composite achieved an exceptionally high H2O2 production rate and rapid atrazine degradation (k = 0.0234 min-1), and efficient Fe2+/Fe3+ cycling with 96.05 % stability after four consecutive cycles. This study demonstrates an effective approach to simultaneously regulate charge separation and reaction pathways in photocatalytic-Fenton-like systems, offering a scalable solution for energy-autonomous water purification with less chemical inputs and recyclable catalytic components.

