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March 3, 2026Journal of Materials Chemistry A5 citations

Multi-capture site design in a bifunctional Zr-MOF for broad-spectrum and efficient removal of short- and long-chain PFASs

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QBQiang BiSZShiping ZhaoYZYumiao Zhang

Key Points

  • Bifunctional MOF-808 effectively captures both short and long-chain PFAS, showcasing significant efficiency in removal.
  • A unique pore effect reduces adsorption of C5 PFAS, implying a targeted action in complex mixtures.
  • Assessment of the MOF's performance reveals it is reusable in wastewater settings, highlighting its practicality for continuous applications.
  • This strategy highlights the potential to tackle environmental contamination from PFAS effectively via advanced materials.

Abstract

Bifunctional MOF-808 captures short/long-chain PFAS via amino/fluorinated groups. A unique pore effect reduces C5 adsorption. Effective and reusable in wastewater, it offers a new PFAS-removal strategy.

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Cite This Study

Bi et al. (2026) studied this question.

synapsesocial.com/papers/69a75b18c6e9836116a21c48https://doi.org/10.1039/d5ta09698g
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