Exploration of novel dual-emission NL-CDs/CuCyI ratio fluorescent probe for the sensitive detection of amoxicillin

A dual-emission ratio fluorescence probe (NL-CDs/CuCyI) was fabricated via an electrostatic self-assembly method. NL-CDs served as the reference signal ( E m = 433 nm), remaining insensitive to amoxicillin, while CuCyI acted as the response signal ( E m = 601 nm), exhibiting varying degrees of fluor...

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Veröffentlicht in:Journal of materials chemistry. C, Materials for optical and electronic devices Materials for optical and electronic devices, 2024-08, Vol.12 (33), p.1314-13114
Hauptverfasser: Shi, Bowen, Yin, Zirui, Tang, Xiaodan, Yu, Hongmei, Cui, Shuanping, Chen, Wei
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Zusammenfassung:A dual-emission ratio fluorescence probe (NL-CDs/CuCyI) was fabricated via an electrostatic self-assembly method. NL-CDs served as the reference signal ( E m = 433 nm), remaining insensitive to amoxicillin, while CuCyI acted as the response signal ( E m = 601 nm), exhibiting varying degrees of fluorescence quenching with amoxicillin concentration changes. This established a fluorescence sensing platform leveraging internal filtration and static quenching synergistically, ensuring high specificity. Compared to the single-signal CuCyI fluorescence probe, the detection range expanded from 0.515 mol L 1 to 0.230 μmol L −1 , with the detection limit decreasing from 0.12 μmol L −1 to 0.073 μmol L −1 , demonstrating significant enhancements in both range and limit. The developed ratiometric fluorescent probe was effectively employed for amoxicillin monitoring in environmental water samples, urine samples, and amoxicillin capsules, achieving recovery rates of 96.5-102.9%. This underscores the accuracy and practical applicability of the NL-CDs/Cu-Cy-I ratio fluorescence probe-based fluorescence analysis method for amoxicillin detection. A dual-emission ratio fluorescence probe (NL-CDs/CuCyI) was fabricated via an electrostatic self-assembly method.
ISSN:2050-7526
2050-7534
DOI:10.1039/d4tc02183e