Cerium-Infused Bismuth Ferrite: A Piezoelectric Powerhouse Igniting Fenton-like Catalysis to Shatter Microplastics

Abstract

Microplastic (MP) pollution is a global environmental concern, and conventional advanced oxidation processes (AOPs) for MPs removal often require harsh conditions. Meanwhile, the environmental risks of degradation byproducts are overlooked. Herein, Ce-doped BiFeO₃ (BCFO) was synthesized as a piezoelectric catalyst to activate a Fenton-like process for the degradation of polyethylene terephthalate (PET)-MPs under mild conditions with ultrasound-assisted treatment and H₂O₂. Results exhibited an outstanding performance, achieving a 39.2% weight loss of PET-MPs within 40 h. The Ce doping promoted the Fe cycle in the Fenton-like process and created new H₂O₂ reaction sites on BCFO with lower adsorption energy (-3.9502 eV) and activation energy (-0.8395 eV) compared with BiFeO₃ (Eads = -0.3087 eV, Eact = 3.5779 eV). Besides, the effects of various parameters affecting the formation of reactive oxygen species (ROS) and the degradation pathway of MPs were analyzed systematically. Toxicity assessments confirmed that the intermediates of degraded PET-MPs were non-toxic to biological organisms, and plants grow normally in the degraded solution. This study provides a new approach for designing environmentally friendly methods for MPs removal under ambient conditions.

Supplementary files

Article information

Article type
Paper
Submitted
14 Mar 2026
Accepted
21 May 2026
First published
29 May 2026

J. Mater. Chem. A, 2026, Accepted Manuscript

Cerium-Infused Bismuth Ferrite: A Piezoelectric Powerhouse Igniting Fenton-like Catalysis to Shatter Microplastics

L. Bai, L. Miao, X. Dong, S. Chen, P. Sun, B. Zhou, Y. Xiong and M. Wu, J. Mater. Chem. A, 2026, Accepted Manuscript , DOI: 10.1039/D6TA02211A

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