4.7 Article

Dual-Channel Probe of Carbon Dots Cooperating with Lanthanide Complex Employed for Simultaneously Distinguishing and Sequentially Detecting Tetracycline and Oxytetracycline

期刊

NANOMATERIALS
卷 12, 期 1, 页码 -

出版社

MDPI
DOI: 10.3390/nano12010128

关键词

molecularly imprinted route; rare earth; carbon dots; distinguishing detection; tetracyclines

资金

  1. National Natural Science Foundation of China [U1904168, 51773052]
  2. Program for Science & Technology Innovation Talents in Universities of Henan Province [20HASTIT015, 19HASTIT040]

向作者/读者索取更多资源

A dual-channel fluorescence probe was developed to distinguish and detect tetracycline and oxytetracycline simultaneously. The probe demonstrated high sensitivity and selectivity and could be used for detection in buffer solution and real samples. Additionally, a portable paper-based sensor was designed for on-site detection using a smartphone color-scanning application.
Tetracycline (TC) and oxytetracycline (OTC) are the most widely used broad-spectrum antimicrobial agents in tetracycline drugs, and their structures and properties are very similar, so it is a great challenge to distinguish and detect these two antibiotics with a single probe at the same time. Herein, a dual-channel fluorescence probe (SiCDs@mMIPs-cit-Eu) was developed by integrating two independent reaction sites with SiCDs-doped mesoporous silica molecular imprinting group and europium complex group into a nanomaterial. The synergistic influence of inner filter effect and antenna effect can be guaranteed to solve the distinction between TC and OTC. Moreover, this novel strategy can also sequentially detect TC and OTC in buffer solution and real samples with high sensitivity and selectivity. This method revealed good responses to TC and OTC ranging from 0 to 5.5 mu M with a detection limit of 5 and 16 nM, respectively. Combined with the smartphone color-scanning application, the portable and cheap paper-based sensor was designed to realize the multi-color visual on-site detection of TC and OTC. In addition, the logic gate device was constructed according to the fluorescence color change of the probe for TC and OTC, which provided the application possibility for the intelligent detection of the probe.

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