铕掺杂碳点(Eu-CDs)用于水中四环素类药物高灵敏度检测的激发波长优化

IF 4.3 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
ACS Omega Pub Date : 2024-12-22 eCollection Date: 2025-01-14 DOI:10.1021/acsomega.4c07414
Aigerim Babenova, Kamila Zhumanova, Ainur Zhussupbekova, Kuanysh Zhussupbekov, Daniele Tosi, Timur Sh Atabaev
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引用次数: 0

摘要

水体的抗生素污染已经成为一个严重的问题,它导致水生生物污染和抗生素耐药性的发展。因此,开发用于抗生素检测的高灵敏度和选择性光学传感器是科学研究的前沿。在这项研究中,我们提出了铕掺杂碳点(Eu-CDs)的合成和激发波长优化,用于水中四环素(TC)和TC家族抗生素的高灵敏度检测。广泛的物理化学分析和激发波长优化表明,Eu-CDs在0.01-3 μM的线性范围内可以在~ 5.8 nM处产生异常高的TC检测限。与其他常用抗生素的选择性分析表明,制备的Eu-CDs仅对TC和TC群抗生素高度敏感。提出了一种可行的Eu-CDs激发相关TC检测机制。我们坚信所制备的Eu-CDs可用于水样中tc家族抗生素的快速、灵敏监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Excitation Wavelength Optimization of Europium-Doped Carbon Dots (Eu-CDs) for Highly Sensitive Detection of Tetracyclines in Water.

Antibiotic contamination of water bodies has become a serious problem, which leads to aquatic life pollution and the development of antibiotic resistance. Hence, development of highly sensitive and selective optical sensors for antibiotic detection is at the forefront of scientific research. In this study, we present the synthesis of europium-doped carbon dots (Eu-CDs) and excitation wavelength optimization for the highly sensitive detection of tetracycline (TC) and TC-family antibiotics in water. An extensive physicochemical analysis and excitation wavelength optimization reveal that Eu-CDs can yield an exceptionally high limit of detection of TC at ∼5.8 nM over a linear range of 0.01-3 μM. Selectivity analysis with other common antibiotics revealed that the produced Eu-CDs are highly sensitive to TC and TC-group antibiotics only. A plausible mechanism for excitation-dependent TC detection by Eu-CDs is proposed. We firmly believe that the prepared Eu-CDs can be potentially employed for quick and sensitive monitoring of TC-family antibiotics in water samples.

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来源期刊
ACS Omega
ACS Omega Chemical Engineering-General Chemical Engineering
CiteScore
6.60
自引率
4.90%
发文量
3945
审稿时长
2.4 months
期刊介绍: ACS Omega is an open-access global publication for scientific articles that describe new findings in chemistry and interfacing areas of science, without any perceived evaluation of immediate impact.
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