Cationic covalent organic framework for the fluorescent sensing and cooperative adsorption of perfluorooctanoic acid

被引:3
|
作者
Jrad, Asmaa [1 ,2 ]
Das, Gobinda [2 ]
Alkhatib, Nour [2 ,3 ]
Prakasam, Thirumurugan [2 ]
Benyettou, Farah [2 ]
Varghese, Sabu [4 ]
Gandara, Felipe [5 ]
Olson, Mark [6 ]
Kirmizialtin, Serdal [2 ,3 ,7 ]
Trabolsi, Ali [1 ,2 ]
机构
[1] NYU Abu Dhabi, NYUAD Water Res Ctr, POB 129188, Abu Dhabi, U Arab Emirates
[2] NYU Abu Dhabi, Chem Program, POB 129188, Abu Dhabi, U Arab Emirates
[3] NYU, Dept Chem, New York, NY 10003 USA
[4] NYU Abu Dhabi, Core Technol Platform, POB 129188, Abu Dhabi, U Arab Emirates
[5] CSIC, Inst Ciencia Mat Madrid, C Sor Juana Ines Cruz 3, Madrid 28049, Spain
[6] Texas A&M Univ Corpus Christi, Dept Phys & Environm Sci, 6300 Ocean Dr, Corpus Christi, TX 78412 USA
[7] NYU Abu Dhabi, Ctr Smart Engn Mat, POB 129188, Abu Dhabi, U Arab Emirates
关键词
PERFLUOROALKYL SUBSTANCES PFASS; SURFACTANT ADSORPTION; SULFONATE PFOS; PERFLUORINATED COMPOUNDS; REMOVAL EFFICIENCY; ACTIVATED CARBONS; SORPTION; NANOSHEETS; CAPTURE; CRYSTALLINE;
D O I
10.1038/s41467-024-53945-4
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The contamination of water by per- and polyfluorinated substances (PFAS) is a pressing global issue due to their harmful effects on health and the environment. This study explores a cationic covalent organic framework (COF), TG-PD COF, for the efficient detection and removal of perfluorooctanoic acid (PFOA) from water. Synthesized via a simple sonochemical method, TG-PD COF shows remarkable selectivity and sensitivity to PFOA, with a detection limit as low as 1.8 mu g<middle dot>L--(1). It achieves significant PFOA adsorption exceeding 2600 mg<middle dot>g(-)(1) within seconds over several cycles in batch mode and complete removal at environmentally relevant concentrations in column adsorption. Results reveal unique adsorption behavior characterized by two phases, leveraging PFOA aggregation through hydrophobic interactions. Computer simulations elucidate the mechanisms underlying TG-PD COF's sensing, adsorption, and charge transfer dynamics. Our findings position this COF design strategy as a promising solution for combating PFAS contamination in water bodies worldwide.
引用
收藏
页数:17
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