共价键
表面改性
氢键
抗生素
污染物
材料科学
废水
化学
化学工程
组合化学
纳米技术
分子
有机化学
环境工程
环境科学
工程类
生物化学
物理化学
作者
Miaoxiu Ge,Wei Xiong,Hongping Zeng,Hang Su,Xiangyu Wang,Dan Zhao,Xiaoming Du,Luhong Wen
出处
期刊:Small
[Wiley]
日期:2025-04-04
卷期号:21 (21): e2500711-e2500711
被引量:5
标识
DOI:10.1002/smll.202500711
摘要
Abstract The excessive presence of antibiotics in water is a significant social concern, as it poses serious health risks to humans, necessitating the urgent development of effective removal methods. Herein, an interfacial polymerization method is presented to fabricate a caterpillar‐like covalent organic frameworks (COF) platform with branch buds (Tp‐Bpy) and utilize a post‐modified method to modulate the environment of channels. The Tp‐Bpy channels grafted with Cu ions and ether‐oxygen chains (Mae) afforded more recognition sites and inner hindrance, thereby enhancing antibiotic removal capacity and efficiency through synergistic interactions and controlled analyte diffusion. The Cu@Tp‐Bpy‐Mae exhibited significantly higher removal capacities (412.79–435.49 mg g −1 ) for four antibiotics, far surpassing those of Tp‐Bpy, Cu@Tp‐Bpy, and other documented material, due to synergistic interactions of electrostatic forces, π–π interactions, coordination bonding, and hydrogen bonding. More importantly, Cu@Tp‐Bpy‐Mae is capable of treating real wastewater to antibiotic concentrations below 0.02 mg L −1 under continuous flow conditions, effectively mitigating drinking water risks caused by high antibiotic levels. This study offers a facile method for tailoring material properties to optimize antibiotic removal performance and exhibits great potential in environmental pollutant removal.
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