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Enhancing electrode sensitivity for detection of antibiotic contamination in water using functionalized magnetic nanoparticles

机译:使用功能化的磁性纳米粒子提高电极灵敏度以检测水中的抗生素污染

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摘要

Portable electrochemical sensors for the detection of antibiotic (AB) contamination are gaining interest as point of care devices and as in-field analytical sensors. In that respect, the low cost and high sensitivity of the sensors is a major benefit. In this study, a low-cost indicator electrode was designed against neomycin (NEO), gatifloxacin (GAT) and sulfathiazole sodium (STNa) as examples of ABs with high probability of contaminating animal feed/water. Ionophore functionalized magnetic nanoparticles were incorporated into the electrode structure to enhance its performance. The detector was able to discriminate (within 10 s) AB clean from AB contaminated water in ranges of 10~(−3)–10~(−8) M, of 10~(−2)–10~(−8) M, and of 10~(−2)–10~(−13) M for NEO, GAT and STNa, respectively. The developed electrodes can be fabricated at low cost; with promising fast and high sensitivity for the detection of AB contamination in water.
机译:用于检测抗生素(AB)污染的便携式电化学传感器作为护理设备和现场分析传感器越来越受到关注。在这方面,传感器的低成本和高灵敏度是主要优点。在这项研究中,设计了一种针对新霉素(NEO),加替沙星(GAT)和磺胺噻唑钠(STNa)的低成本指示电极,作为ABs极有可能污染动物饲料/水的例子。离子载体功能化的磁性纳米粒子被并入电极结构以增强其性能。检测器能够在10〜(-3)–10〜(-8)M,10〜(-2)–10〜(-8)M的范围内(10 s内)从AB污染水中区分出AB清洁对于NEO,GAT和STNa分别为10〜(-2)–10〜(-13)M。所开发的电极可以以低成本制造。具有快速而灵敏的检测水中AB污染的潜力。

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