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Fabrication of label-free and ultrasensitive electrochemical immunosensor based on molybdenum disulflde nanoparticles modified disposable ITO: An analytical platform for antibiotic detection in food samples

机译:基于钼二核纳米颗粒的无敏感电化学免疫传感器制备改性一次性ITO:食品样品中抗生素检测的分析平台

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摘要

Here, we aimed to fabricate a label-free immunosensing platform for the first time based on molybdenum disulfide nanoparticles (nMoS(2)NPs) deposited on ITO) coated glass substrate for the electrochemical detection of ampicillin (AMP). The stable and high surface area of nMoS(2)NPs were made by a low-temperature one-step hydrothermal route, bestowing the carrying capacity of anti-AMP (antibody against AMP) through an amide linkage. The spectroscopic, morphological, and structural characterization of the proposed electrodes were performed using various analytical and electrochemical techniques. The differential pulse voltammetry technique was utilized to evaluate anti-AMP and AMP interaction on the electrode surface. The developed immunosensor exhibits high sensitivity, a broad detection range having a significant detection limit towards detection of AMP having excellent selectivity, acceptable stability, and reproducibility. Furthermore, the applicability of the proposed immunosensor was tested in spiked milk, water, and orange juice, and the results confirmed the consistency of the immunosensor.
机译:在此,我们旨在基于沉积在ITO上沉积在ITO的二硫化钼纳米颗粒(NMOS(2)NP)的硅胶玻璃基板上进行无标签免疫抑制平台,用于氨苄青霉素(AMP)的电化学检测。通过低温一步水热路线制备NMOS(2)NPS的稳定和高表面积,使抗AMP(抗体抗AMP)的承载能力通过酰胺键制备。使用各种分析和电化学技术进行所提出的电极的光谱,形态学和结构表征。利用差分脉冲伏安法技术评估电极表面上的抗AMP和AMP相互作用。发育的免疫传感器具有高灵敏度,具有显着的检测范围对检测具有优异选择性,可接受的稳定性和再现性的AMP具有显着的检测范围。此外,在尖刺的牛奶,水和橙汁中测试了所提出的免疫传感器的适用性,结果证实了免疫传感器的稠度。

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