Hou Na-na, Sun Qiang, Zhang Ning, Ni Meng-fei, Lin Chen, Wang Le-yong. Construction of Pillar[5]arene-functionalized Polymeric Hydrogel and Its Visual Detection of Herbicide Paraquat. [J]. Acta Polymerica Sinica (1):86-92(2017)
DOI:
Hou Na-na, Sun Qiang, Zhang Ning, Ni Meng-fei, Lin Chen, Wang Le-yong. Construction of Pillar[5]arene-functionalized Polymeric Hydrogel and Its Visual Detection of Herbicide Paraquat. [J]. Acta Polymerica Sinica (1):86-92(2017) DOI: 10.11777/j.issn1000-3304.2017.16243.
Construction of Pillar[5]arene-functionalized Polymeric Hydrogel and Its Visual Detection of Herbicide Paraquat
A mono-functionalized pallar[5]arene was designed and synthesized. It was then mixed with AAM
MBA
and AIBN in DMSO. The mixture was stirred at 70℃ for 12 h to give a functionalized polymer of pillar[5]arene. The polymer was then immersed in DMSO and deionized water
respectively
and the polymeric hydrogel was successfully prepared. For the synthesis of the polymer hydrogels with expected morphology and mechanical property
the best molar ratio was found to be 1:9:0.054:0.25 for functionalized pallar[5]arene monomer:AAM:MBA:AIBN was
and the polymerization reaction was at 70℃ for 12 h after the mixture deoxygenized. While the above optimized polymeric hydrogel was immersed in paraquat aqueous solution
a supramolecular polymeric hydrogel was achieved due to the host-guest complexing of paraquat in aqueous soltuion with pillar[5]arene moiety in the hydrogel. And the strong host-guest interaction of pillar[5]arene with paraquat was attributed to charge-transfer interactions between the electron-rich and suitable size of cavities of the pillar[5]arene derivatives and the encircled electron-poor guests. It was found that
during the formaiton of the supramolecular polymeric hydrogel
the color of the hydrogel became deep brown from pale yellow with increasing concentration of paraquat
which provided a good method for the collection and visual detection of paraquat in the aqueous solution by naked eyes. Increasing temperature promoted the absorption of paraquat by the polymeric hydrogel as well. In addition
the detection of paraquat by such polymeric hydrogel was studied by UV-Vis spectroscopy and UV-Vis absorption showed that the concentration of paraquat in water was decreasing because of its absorption by the polymeric hydrogel. This new type of pillararene-based adsorbent materials is considered as a potential adsorbent for the removal of harmful substances from wastewaters.
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Related Institution
School of Chemistry, Xi'an Jiaotong University
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