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Rapid preparation of surface-enhanced Raman substrate in microfluidic channel for trace detection of amoxicillin

机译:在微流体通道中快速制备用于痕量Amoxicillin的微流体通道中的表面增强拉曼衬底

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A high sensitive surface-enhanced Raman scattering (SERS) substrate based on the Ag dendrite in a T-type microfluidic device was constructed by a simple and rapid strategy. According to the simulated results by COMSOL Multiphysics, the microfluidic-SERS sensor was fabricated by simultaneously introducing into 40 mmol.L-1 silver nitrate solution and 0.2 mol.L-1 sodium nitrate solution for about 15 min with the flow velocity at 20 mu L.min(-1) at room temperature, respectively. The analytical performance of this sensor was investigated with different concentrations of amoxicillin aqueous solution, and the detection limit was up to 1.0 ng.mL(-1). And the semi-quantitation was obtained from the relationship between the Raman intensity and the logarithm of the amoxicillin concentration. This method can be employed to fabricate high sensitive microfluidic-SERS sensors as well as realize many lab-on-a-chip applications with the integration of other microfluidic networks. (C) 2020 Elsevier B.V. All rights reserved.
机译:基于T型微流体装置中Ag枝晶的高敏感表面增强拉曼散射(SERS)基材通过简单且快速的策略构建。根据COMSOL多发性的模拟结果,通过将40mmol.L-1硝酸银溶液和0.2mol.L-1硝酸钠溶液同时引入约15分钟的微流体 - SERS传感器在20亩L.Min(-1)分别在室温下。采用不同浓度的阿莫西林水溶液研究了该传感器的分析性能,检测极限高达1.0ng.ml(-1)。从拉曼强度与阿莫西林浓度的对数之间的关系获得半定量。该方法可用于制造高敏感的微流体 - SERS传感器,并实现许多用于其他微流体网络的芯片应用的应用。 (c)2020 Elsevier B.v.保留所有权利。

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