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Updated: Jan 16, 2026

Light-driven Enzymatic Decarboxylation
Published on: May 22, 2016
An Electrical Stimulation-Driven Strategy for Peroxide-like Enzyme Reactivation toward Sustainable Wastewater
Jingyang Fang1, Guopeng Xu2, Paul K Chu3
1Department of Polymeric Materials, School of Materials Science and Engineering, Tongji University, 4800 Caoan Road, Shanghai 201804, China.
Abstract:
Metal-based enzyme mimics face irreversible deactivation due to the oxidation of active metal centers, limiting their sustainability in wastewater treatment. To meet this important challenge, we introduce an electrical stimulation strategy by designing Fe-doped titanium dioxide nanolines (Fe-TNLs) that mimic peroxidase (POD) activity and regenerate catalytic function, enabling enzyme reuse. The Fe-TNLs exhibit robust POD-like activity by catalyzing the decomposition of H2O2 into hydroxyl radicals (•OH), achieving over 99.9% inactivation againstEscherichia coli and Staphylococcus aureus during the initial cycle. Unlike conventional Fe-based POD mimics, which are rapidly deactivated due to the oxidation of Fe(II) to Fe(III), this system achieves a reversible Fe(III)/Fe(II) redox cycle through electrical charging, restoring over 80% of the initial catalytic efficiency. Moreover, the reactivated Fe-TNLs maintain effective performance in simulated wastewater and retain approximately 60% of their initial efficacy after reactivation, outperforming single-use systems. By emphasizing sustainable reusability over single-use designs, this work offers a compelling approach for advancing environmentally friendly wastewater remediation technologies.
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