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Targeted synthesis of a high-stability anionic cyclophosphazene-based porous organic polymer for highly efficient remediation of methylene blue

  • Kun Zhao
  • , Haowei Liu
  • , Jianxue Li
  • , Lei Tan
  • , Ke Meng
  • , Shaohua Liu
  • , Jianwei Fu*
  • *此作品的通讯作者
  • Zhengzhou University

科研成果: 期刊稿件文章同行评审

摘要

Developing ionic porous polymers with stable structure is of paramount significance for the efficient removal of charged organic contaminants. Herein, an ionic cross-linked polymer (POP-SO3Na) with rich mesopores/macropores was facilely synthesized by copolymerization of 4,4′-diamino-2,2′-stilbenedisulfonic acid and hexachlorocyclotriphosphazene, followed by an easy-to-implement alkali soaking strategy. POP-SO3Na showed an ultra-fast adsorption speed and a high adsorption capacity for cationic model contaminant methylene blue (MLB). At the initial concentration of 250 mg L−1 and temperature of 25 °C, the adsorption capacity of POP-SO3Na for MLB were up to 785.8 mg g−1, and the adsorption equilibrium time was only 20 min. Also, POP-SO3Na maintained a high level of adsorption capacity (608.0–833.2 mg g−1) for MLB over a wide pH range (3.0–8.0), presenting excellent pH adaptability. Furthermore, in the binary system of MLB mixed with three different anionic dyes, POP-SO3Na showed superior adsorption selectivity for MLB with high values of relative separation factor (1635.9, 1194.2 and 125.6) at 10 min. The adsorption behavior of POP-SO3Na towards MLB aligned well with Langmuir isotherm model and pseudo-second-order kinetics, and the plausible adsorption mechanism consisted of electrostatic interaction, hydrogen bonding, π-π stacking and pore filling.

源语言英语
文章编号114336
期刊European Polymer Journal
240
DOI
出版状态已出版 - 19 11月 2025

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