School of Chemical Engineering, Nanjing University of Science & Technology, Nanjing, 210094, China; State Key Laboratory for Marine Corrosion and Protection, Luoyang Ship Material Research Institute (LSMRI), Xiamen, 361100, China.
School of Chemical Engineering, Nanjing University of Science & Technology, Nanjing, 210094, China.
Anal Chim Acta. 2022 Jan 15;1190:339236. doi: 10.1016/j.aca.2021.339236. Epub 2021 Nov 2.
The antibiotic tetracycline (Tc) is a major contaminant in food and water, with adverse effects on both ecosystems and human health. The development of novel sensors for tetracycline detection is of great importance. In this work, we develop a novel heteroatom-free conjugated tetraphenylethylene polymer (TPE-CMP) fluorescence sensor for the detection of tetracycline. In the presence of Tc, the emission fluorescence of TPE-CMP was quenched by the photoinduced electron transfer mechanism to achieve high sensitivity. The polymers can detect tetracycline at a concentration of 0-100 μg/mL with a good linear correlation (0.99), and the limit of detection (LOD) is 1.23 μg/mL. Furthermore, TPE-CMP has excellent selectivity in detecting Tc in the presence of various anti-interference analytes, including ions and antibiotics. In addition, the practical feasibilities of TPE-CMP for Tc sensing were further investigated in milk, urine and wastewater samples with satisfactory recoveries (from 94.96% to 112.53% for milk, from 96.41% to 99.31% for urine and from 98.54% to 100.52% for wastewater). We have designed and synthesized TPE-CMP based on heteroatom-free for the specific fluorescence detection of tetracycline, expanding the range of fluorescence detection sensors and offering great promise for practical applications.
抗生素四环素(Tc)是食物和水中的主要污染物,对生态系统和人类健康都有不良影响。开发新型四环素检测传感器具有重要意义。在这项工作中,我们开发了一种新型不含杂原子的共轭四苯乙烯聚合物(TPE-CMP)荧光传感器,用于检测四环素。在 Tc 的存在下,TPE-CMP 的发射荧光通过光致电子转移机制被猝灭,从而实现了高灵敏度。该聚合物可以在 0-100μg/mL 的浓度范围内检测到四环素,具有良好的线性相关性(0.99),检测限(LOD)为 1.23μg/mL。此外,TPE-CMP 在存在各种干扰分析物(包括离子和抗生素)时,对 Tc 的检测具有优异的选择性。此外,进一步研究了 TPE-CMP 在牛奶、尿液和废水样品中检测 Tc 的实际可行性,回收率令人满意(牛奶为 94.96%-112.53%,尿液为 96.41%-99.31%,废水为 98.54%-100.52%)。我们基于不含杂原子的设计和合成了 TPE-CMP,用于四环素的特异性荧光检测,扩展了荧光检测传感器的范围,并为实际应用提供了广阔的前景。