4.7 Article

Amidoxime-functionalized covalent organic framework as simultaneous luminescent sensor and adsorbent for organic arsenic from water

Journal

CHEMICAL ENGINEERING JOURNAL
Volume 429, Issue -, Pages -

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.cej.2021.132162

Keywords

Covalent Organic Framework; Amidoxime-functionalized; Fluorescence Sensor; Adsorbent; Organic Arsenic

Funding

  1. Chinese Scholarship Council (CSC) [201808110210, 201804910742]
  2. Verbundvorhaben iNEW: Inkubator Nachhaltige Elektrochemische Wertschodpfungsketten [03SF0589A]
  3. Research Board of Ghent University [GOA010-17, BOF GOA2017000303]

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Covalent organic frameworks (COFs) have been investigated as fluorescence sensors and adsorbents for the detection and removal of organic arsenic from water. The synthesized sp2 carbon-conjugated COFs with amidoxime functionalization exhibit high fluorescence quenching efficiencies for detecting roxarsone (ROX) and high adsorption capacities for organic arsenic compounds. The results demonstrate the great potential of these COFs for practical applications in wastewater treatment.
Organoarsenic compounds are widely used as feed additives in the poultry industry. However, the release of organoarsenic-containing wastewater can cause serious poisoning to the ecosystem. For this reason, detection and adsorption of organic arsenic from wastewater is crucial but also very challenging. Here, the use of covalent organic frameworks (COFs) as fluorescence sensors and adsorbents for the detection and adsorption of organic arsenic from water has been investigated for the first time. Two isoreticular crystalline and highly porous sp2 carbon-conjugated COFs were synthesized, and amidoxime-functionalized via post-synthetic modification (PSM). The long-range order and pi-conjugated system ensure that both COFs act as fluorescent sensors for detecting the representative organic arsenic, roxarsone (ROX). The fluorescence quenching efficiencies of ROX on both COFs are over 98%. The limits of detection (LOD) for ROX by both COFs are estimated to be 6.5 and 12.3 nM. Additionally, the regular pores and the abundantly decorated amidoxime moiety exhibit extraordinary accessibility, which facilitates the adsorption of ROX. High adsorption capacities were obtained for both materials which amounts are up to 732 and 787 mg g-1. After five times of recycling, a negligible decrease in the adsorption capacity was noted, which reveals the excellent regeneration ability of those two amidoximefunctionalized COFs. These results indicate that the state-of-the-art sp2 carbon-conjugated amidoxime-functionalized COFs exhibit a high potential for the practical detection and adsorption of organoarsenic compounds from wastewater.

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