Solid-state degradation and visual detection of the nerve agent GB by SA@UiO-66-NH2@PAMAM hydrogel

A new sodium alginate (SA) composite hydrogel, SA@UiO-66-NH2@PAMAM, was synthesized by grafting or immobilizing UiO-66-NH2 and PAMAM to the backbone of SA through covalently binding with glutaraldehyde (GLA) for the rapid solid-state degradation of organophosphorus derivatives without any additional...

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Veröffentlicht in:Polymer chemistry 2022-11, Vol.13 (44), p.6205-6212
Hauptverfasser: Shen, Ao, Hao, Xiaohui, Zhang, Lifeng, Du, Man, Li, Mengwen, Zhao, Yongwei, Li, Ziqi, Hou, Lala, Duan, Ruochen, Yang, Yunxu
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Sprache:eng
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Zusammenfassung:A new sodium alginate (SA) composite hydrogel, SA@UiO-66-NH2@PAMAM, was synthesized by grafting or immobilizing UiO-66-NH2 and PAMAM to the backbone of SA through covalently binding with glutaraldehyde (GLA) for the rapid solid-state degradation of organophosphorus derivatives without any additional auxiliary substances. SA@UiO-66-NH2@PAMAM could also be easily processed into cotton fabric to form a recyclable flexible cotton device, SA@UiO-66-NH2@PAMAM@cotton. Upon introducing the indicator 4-nitro-(dimethyl-tert-butyl) silica ether (P-NSE) to the composite hydrogel system to form a new Gel-1, degradation changes could be measured by using the product of nitrophenol (P-NP) with a yellow color in the gel to monitor the hydrolysis of the nerve agent GB. Therefore, the integrative multifunctional hydrogel Gel-1@cotton with a smartphone as a portable platform was used to realize the real-time monitoring of changes of GB degradation under visible light.
ISSN:1759-9954
1759-9962
DOI:10.1039/d2py01150f