Calix[4]arene‐based Supramolecular Gels for Mercury Ion Removal in Water

Author:

Chen Tyng‐Rong1,Chang Kai‐Chi2ORCID,Chen Chan‐Yu2,Wu Ting‐Wen3,Lee Li‐Wei2,Shen Li‐Ching1,Chen Hsin‐Ni3,Chung Wen‐Sheng13ORCID

Affiliation:

1. Department of Applied Chemistry National Chiao Tung University Hsinchu 30010 Taiwan

2. Bachelor Degree Program in Marine Biotechnology National Taiwan Ocean University Keelung 202301 Taiwan

3. Department of Applied Chemistry National Yang Ming Chiao Tung University Hsinchu 30010 Taiwan

Abstract

AbstractA calix[4]arene‐based gelator 1, with lower‐rim mono triazolylpyridine group, capable of spontaneous self‐assembly into microspheres in different ethanol/H2O mixtures, is synthesized. The concentration‐dependent 1H NMR spectra and X‐ray single‐crystal structure of 1 provided evidence for self‐assembly of gelator 1 via cooperative interactions of intermolecular noncovalent forces. Furthermore, metallogels by self‐assembly of 1 was found to exhibit remarkable selectivity toward Hg2+ ions. 1H NMR spectra support that Hg2+ ion was bound to the nitrogen atoms of two coordination sites of 1, which composed of triazole and pyridine. Moreover, the results of field emission scanning electron microscopy and rheology experiments indicated that Hg2+ ions not only enhanced the gelling ability of gelator 1 in ethanol but also led to morphological change of its self‐assembly through metal‐ligand interactions. Finally, the in situ gelation, triggered by mixing a gelator solution of 1 in ethanol with water samples such as deionized (DI), tap, and lake water, leads to the effective removal of Hg(II) from a water sample which reduced from 400 to 1.6 ppm.

Publisher

Wiley

Subject

General Chemistry,Biochemistry,Organic Chemistry

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