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◆ Environmental Science and Ecotechnology2026-05-20· Chemistry

Oxygen vacancy–rich spinel oxide drives phenol polymerization via direct oxidative transfer

Xinchun Ye, Yichuan Wang, Tianlin Zhou, Hu Yi, Linjiang Zou, Qinsong Zou, Dezhi Chen, Jianping Zou, Xubiao Luo

原始摘要(英文原文)· Original abstract
and α-FeOOH. Our findings highlight a robust defect-engineering strategy to precisely dictate organic reaction pathways on catalytic surfaces. This targeted polymer-forming approach establishes a sustainable, low-carbon paradigm for advanced water purification.
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Oxygen vacancy–rich spinel oxide drives phenol polymerization via direct oxidative transfer — 科研速览 Science Skim