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Copper-crosslinked carbon dot hydrogel nanozyme for colorimetric - tert-butylhydroquinone biosensing and smartphone-assisted visual ratiometric assay.
Fan, Wenfang; Guo, Luohua; Qu, Yun; Zhuang, Qianfen; Wang, Yong.
Afiliação
  • Fan W; School of Chemistry and Chemical Engineering, Nanchang University, Nanchang 330031, China.
  • Guo L; School of Chemistry and Chemical Engineering, Nanchang University, Nanchang 330031, China.
  • Qu Y; School of Chemistry and Chemical Engineering, Nanchang University, Nanchang 330031, China.
  • Zhuang Q; School of Chemistry and Chemical Engineering, Nanchang University, Nanchang 330031, China.
  • Wang Y; School of Chemistry and Chemical Engineering, Nanchang University, Nanchang 330031, China; State Environmental Protection Key Laboratory of Monitoring for Heavy Metal Pollutants, Changsha 410019, China. Electronic address: wangyong@ncu.edu.cn.
J Hazard Mater ; 468: 133795, 2024 04 15.
Article em En | MEDLINE | ID: mdl-38382342
ABSTRACT
Due to the potential environment and health risks of tert-butylhydroquinone (TBHQ), rapid, portable, selective and sensitive quantification of TBHQ in food and the environment are strictly essential. With this in mind, a selective, sensitive and rapid colorimetric TBHQ biosensor was developed using rationally designed copper-crosslinked carbon dot hydrogel nanozyme (BC-CDs@Cu). The BC-CDs@Cu had a high peroxidase-like activity toward the chromogenic reaction of hydrogen peroxide with dopamine via the generation of hydroxyl radicals and electron transfer process. The Michaelis-Menten constants of BC-CDs@Cu for dopamine and hydrogen peroxide were determined to be 0.86 and 0.91 mM. The added TBHQ markedly inhibited the BC-CDs@Cu-catalyzed dopamine oxidation by hydrogen peroxide, ascribing to the highly effective and rapid scavenging of hydroxyl radicals and the suppression of electron transfer. The inhibitory extent was applied for well quantifying TBHQ in the range of 0.5 - 20.0 µM with a detection limit of 70 nM. The proposed biosensor had a negligible response to various interfering substances. Moreover, a smartphone-assisted visual ratiometric biosensor was fabricated, and used to accomplish portable quantification of TBHQ in edible oils and water samples. This work reveals the enormous potential of hydrogel nanozyme, which will open a new situation for the detection of hazardous substances.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Técnicas Biossensoriais / Cobre / Hidroquinonas Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Técnicas Biossensoriais / Cobre / Hidroquinonas Idioma: En Ano de publicação: 2024 Tipo de documento: Article