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Supramolecular assemblies of a newly developed indole derivative for selective adsorption and photo-destruction of perfluoroalkyl substances.

Authors :
Jin X
Wang Z
Hong R
Chen Z
Wu B
Ding S
Zhu W
Lin Y
Gu C
Source :
Water research [Water Res] 2022 Oct 15; Vol. 225, pp. 119147. Date of Electronic Publication: 2022 Sep 23.
Publication Year :
2022

Abstract

Per-/polyfluoroalkyl substances (PFASs) contamination has caused worldwide health concerns, and increased demand for effective elimination strategies. Herein, we developed a new indole derivative decorated with a hexadecane chain and a tertiary amine center (named di-indole hexadecyl ammonium, DIHA), which can form stable nanospheres (100-200 nm) in water via supramolecular assembly. As the DIHA nanospheres can induce electrostatic, hydrophobic and van der Waals interactions (all are long-ranged) that operative cooperatively, in addition to the nano-sized particles with large surface area, the DIHA nanocomposite exhibited extremely fast adsorption rates (in seconds), high adsorption capacities (0.764-0.857 g g <superscript>-1</superscript> ) and selective adsorption for perfluorooctanoic acid (PFOA) and perfluorooctane sulfonic acid (PFOS), outperformed the previous reported high-end PFASs adsorbents. Simultaneously, the DIHA nanospheres can produce hydrated electron (e <subscript>aq</subscript> <superscript>-</superscript> ) when subjected to UV irradiation, with the virtue of constraining the photo-generated e <subscript>aq</subscript> <superscript>-</superscript> and the adsorbed PFOA/PFOS molecules entirely inside the nanocomposite. As such, the UV/DIHA system exhibits extremely high degradation/defluorination efficiency for PFOA/PFOS, even under ambient conditions, especially with the advantages of low chemical dosage requirement (μM level) and robust performance against environmental variables. Therefore, it is a new attempt of using supramolecular approach to construct an indole-based nanocomposite, which can elegantly combine adsorption and degradation functions. The novel DIHA nanoemulsion system would shed light on the treatment of PFAS-contaminated wastewater.<br />Competing Interests: Declaration of Competing Interest The authors declare the following financial interests/personal relationships which may be considered as potential competing interests: Xin Jin, Cheng Gu has patent licensed to ZL202010353919.4.<br /> (Copyright © 2022. Published by Elsevier Ltd.)

Details

Language :
English
ISSN :
1879-2448
Volume :
225
Database :
MEDLINE
Journal :
Water research
Publication Type :
Academic Journal
Accession number :
36206684
Full Text :
https://doi.org/10.1016/j.watres.2022.119147