Fluorescent sensor based on bismuth metal-organic frameworks (Bi-MOFs) mimic enzyme for H2O2 detection in real samples and distinction of phenylenediamine isomers

Although peroxidase-like nano-enzymes have been widely utilized in biosensors, nano-enzyme based biosensors are seldom used for both quantitative analysis of H2O2 and differentiation of isomers of organic compounds simultaneously. In this study, a dual-functional mimetic enzyme-based fluorescent sen...

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Veröffentlicht in:Talanta (Oxford) 2024-05, Vol.272, p.125753-125753, Article 125753
Hauptverfasser: Peng, Liping, Guo, Hao, Wu, Ning, Wang, Mingyue, Hui, Yingfei, Ren, Henglong, Ren, Borong, Yang, Wu
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Sprache:eng
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Zusammenfassung:Although peroxidase-like nano-enzymes have been widely utilized in biosensors, nano-enzyme based biosensors are seldom used for both quantitative analysis of H2O2 and differentiation of isomers of organic compounds simultaneously. In this study, a dual-functional mimetic enzyme-based fluorescent sensor was constructed using metal-organic frameworks (Bi-MOFs) with exceptional oxidase activity and fluorescence properties. This mimetic enzyme sensor facilitated quantitative analysis of H2O2 and accurate discrimination of phenylenediamine isomers. The sensor exhibited a wide linear range (0.5–400 μM) and low detection limit (0.16 μM) for the detection of H2O2. Moreover, the sensor can also be used for the discrimination of phenylenediamine isomers, in which the presence of o-phenylenediamine (OPD) leads to the appearance of a new fluorescence emission peak at 555 nm, while the presence of p-phenylenediamine (PPD) significantly quenched its fluorescence due to the internal filtration effect. The proposed strategy exhibited a commendable capability in distinguishing phenylenediamine isomers, thereby paving the way for novel applications of MOFs in the field of environmental science. [Display omitted] •A mimic enzyme fluorescent probe realized detection of H2O2 and distinction of phenylenediamine isomers, simultaneously.•A green, simple and eco-friendly method is used to visual analysis.•H2O2 in real samples was detected by the proposed fluorescent probe.
ISSN:0039-9140
1873-3573
DOI:10.1016/j.talanta.2024.125753