摘要
The remediation of perfluorooctanoic acid (PFOA) remains a critical challenge due to its exceptional chemical stability and bioaccumulation risks. Here, we present two pyrene-based multicomponent metallacages that synergistically integrate high-capacity adsorption and photocatalytic degradation of PFOA. The 4,4’-bipyridine tetracarboxylate-derived metallacage demonstrates a high PFOA adsorption capacity of 1223 mg/g, facilitated by multivalent electrostatic interactions and hydrogen bonds. Subsequent photocatalytic treatment of the preconcentrated PFOA achieves 91% defluorination within 6 h through a superoxide radical-mediated chain-shortening mechanism, as verified by electron paramagnetic resonance and intermediate analyses. A practical immobilized system fabricated by anchoring metallacages onto molecular sieves retains over 80% of its initial activity over six consecutive cycles. This work establishes the molecular-level integration of adsorption and photocatalysis in supramolecular architectures, providing a highly efficient approach to address persistent organic pollutants.
| 源语言 | 英语 |
|---|---|
| 页(从-至) | 37943-37953 |
| 页数 | 11 |
| 期刊 | ACS Nano |
| 卷 | 19 |
| 期 | 43 |
| DOI | |
| 出版状态 | 已出版 - 4 11月 2025 |
学术指纹
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