化学
全氟辛酸
水溶液
笼子
环境修复
吸附
多孔介质
水介质
化学工程
氢键
人体净化
多孔性
污染
环境化学
有机化学
分子
废物管理
工程类
生态学
数学
组合数学
生物
作者
Yanlei He,Jianqiao Zhou,Yi Li,Yu‐Dong Yang,Jonathan L. Sessler,Xiaodong Chi
摘要
Per- and polyfluoroalkyl substances (PFAS) accumulate in water resources and pose serious environmental and health threats due to their nonbiodegradable nature and long environmental persistence times. Strategies for the efficient removal of PFAS from contaminated water are needed to address this concern. Here, we report a fluorinated nonporous adaptive crystalline cage (F-Cage 2) that exploits electrostatic interaction, hydrogen bonding, and F–F interactions to achieve the efficient removal of perfluorooctanoic acid (PFOA) from aqueous source phases. F-Cage 2 exhibits a high second-order kobs value of approximately 441,000 g mg–1 h–1 for PFOA and a maximum PFOA adsorption capacity of 45 mg g–1. F-Cage 2 can decrease PFOA concentrations from 1500 to 6 ng L–1 through three rounds of flow-through purification, conducted at a flow rate of 40 mL h–1. Elimination of PFOA from PFOA-loaded F-Cage 2 is readily achieved by rinsing with a mixture of MeOH and saturated NaCl. Heating at 80 °C under vacuum then makes F-Cage 2 ready for reuse, as demonstrated across five successive uptake and release cycles. This work thus highlights the potential utility of suitably designed nonporous adaptive crystals as platforms for PFAS remediation.
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