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Anion-Selective Redox COF with Antidissolution and Antifouling Electrochemical Performance for Membrane-Free Desalination Battery

  • Yuquan Li
  • , Zehua Bian
  • , Chonglu Wang
  • , Qingyu Hong
  • , Hao Wang
  • , Haoyun Han
  • , Tao Liu
  • , Jiyun Hu*
  • , Likun Pan*
  • , Xiaozhi Wang*
  • *此作品的通讯作者
  • Yangzhou University
  • Dalian University of Technology
  • East China Normal University
  • Great Bay University

科研成果: 期刊稿件文章同行评审

摘要

Electrode longevity, the cost of ion-exchange membranes, and side reactions are critical obstacles for desalination batteries to compete with traditional technologies. Anion-selective faradaic electrodes with antifouling and antidissolution properties remain a key challenge for constructing membrane-free desalination batteries. Herein, p-type N,N’-diphenyl-5,10-dihydrophenazine (PN)-derived polymer was introduced as the anion-selective electrode for desalination application. Leveraging the structural stability of PN active centers and the rigid framework nature of a 3D covalent organic framework (COF), the PN-derived 3D COF (3D-PN COF) exhibits good thermal stability and antidissolution property in acid/alkali solutions. Therefore, its derived electrode presents a high electrochemical stability under overdischarging conditions, as well as in pollutant-containing solutions. Coupled with a cation-selective Prussian blue analogue (PBA) electrode, this anion-selective 3D-PN COF enables a stable membrane-free desalination battery. Owing to the fixed redox potential of the 3D-PN COF and PBA electrode (both around 0.4 V vs Ag/AgCl), the oxygen reduction reaction (ORR) is restricted, which would cause desalination decay and the Faradaic rectification effect. This study not only demonstrates that p-type PN is a promising stable anion-selective redox center for desalination application but also verifies that the suitable redox potential of faradaic electrodes can suppress ORR without the help of a cation-exchange membrane to block dissolved oxygen from the electrode.

源语言英语
页(从-至)24113-24123
页数11
期刊Environmental Science and Technology
59
44
DOI
出版状态已出版 - 11 11月 2025

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