Ti-co-Ce oxide decorated chitosan fiber oxidase mimic identified for portable monitoring of S 2- , CrO 4 2- and Fe 2+ assisted with a smartphone

Environmental safety and protection is one of the most concerned topics nowadays. To conveniently monitor toxic S /CrO and to regulate bioactive Fe , Ti-co-Ce oxide decorated chitosan fiber (Ti-co-Ce ox@CC) was developed using microwave-assisted hydrothermal method. The integration of chitosan fiber...

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Veröffentlicht in:International journal of biological macromolecules 2024-12, p.138961
Hauptverfasser: Hao, Junkai, Song, Hanning, Du, Lisheng, Feng, Jing, Sun, Shuo, Fan, Zitong, Deng, Fan, Hu, Lei, Yao, Wenli, Yan, Zhengquan
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Sprache:eng
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Zusammenfassung:Environmental safety and protection is one of the most concerned topics nowadays. To conveniently monitor toxic S /CrO and to regulate bioactive Fe , Ti-co-Ce oxide decorated chitosan fiber (Ti-co-Ce ox@CC) was developed using microwave-assisted hydrothermal method. The integration of chitosan fiber and nano Ti-co-Ce oxide endowed Ti-co-Ce ox@CC with superior oxidase-like activity and improved water-dispersibility. It could quickly accelerate the oxidization of 3,3',5,5'-tetramethyl benzidine (TMB) with V /K of 6.67 × 10  M·s /0.0178 mM, much better than these (4.31 × 10  M·s /0.0471 mM) for Ti-co-Ce oxide only. Trace S , CrO or Fe could selectively alter the oxidase-like activity with clear hyperchromic or hypochromic effect. Under the optimized conditions, there expressed excellent linear relationships between A and c , c or c with ideal limits of detection (LOD) of 7.8 × 10  M, 5.0 × 10  M and 6.5 × 10  M respectively. What's more, the red-green-blue (RGB) values analyzed by a smartphone also expressed nice linear relationships with satisfactory LODs of 3.8 × 10  M, 7.7 × 10  M and 9.2 × 10  M for S , CrO and Fe . The proposed Ti-co-Ce ox@CC sensing platform will provide a promising potential for on-site intelligent identification of S , CrO and Fe in practice.
ISSN:1879-0003