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Sensing and Liquid–Liquid Extraction of Dicarboxylates Using Dicopper Cryptates

Authors :
Massimo Boiocchi
Riccardo Mobili
Sonia La Cognata
Louis J. Maher
Francesca Merlo
Teresa Recca
Valeria Amendola
Andrea Speltini
Source :
ACS Omega, ACS Omega, Vol 5, Iss 41, Pp 26573-26582 (2020)
Publication Year :
2020
Publisher :
American Chemical Society, 2020.

Abstract

We report the investigation of dicopper(II) bistren cryptate, containing naphthyl spacers between the tren subunits, as a receptor for polycarboxylates in neutral aqueous solution. An indicator displacement assay for dicarboxylates was also developed by mixing the azacryptate with the fluorescent indicator 5-carboxyfluorescein in a 50:1 molar ratio. Fluorimetric studies showed a significant restoration of fluorophore emission upon addition of fumarate anions followed by succinate and isophthalate. The introduction of hexyl chains on the naphthalene groups created a novel hydrophobic cage; the corresponding dicopper complex was investigated as an extractant for dicarboxylates from neutral water into dichloromethane. The liquid-liquid extraction of succinate-as a model anion-was successfully achieved by exploiting the high affinity of this anionic guest for the azacryptate cavity. Extraction was monitored through the changes in the UV-visible spectrum of the dicopper complex in dichloromethane and by measuring the residual concentration of succinate in the aqueous phase by HPLC-UV. The successful extraction was also confirmed by 1H-NMR spectroscopy. Considering the relevance of polycarboxylates in biochemistry and in the environmental field, e.g., as waste products of industrial processes, our results open new perspectives for research in all contexts where recognition, sensing, or extraction of polycarboxylates is required.

Details

Language :
English
ISSN :
24701343
Volume :
5
Issue :
41
Database :
OpenAIRE
Journal :
ACS Omega
Accession number :
edsair.doi.dedup.....0fd7f4ddcf8de92ddd5bb76c8bb68cb3