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Bisphenol A Sensors on Polyimide Fabricated by Laser Direct Writing for Onsite River Water Monitoring at Attomolar Concentration

机译:激光直写法在聚酰亚胺上制备双酚A传感器,用于在摩尔浓度下现场监测河水

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摘要

This work presents an aptamer-based, highly sensitive and specific sensor for atto- to femtomolar level detection of bisphenol A (BPA). Because of its widespread use in numerous products, BPA enters surface water from effluent discharges during its manufacture, use, and from waste landfill sites throughout the world. On-site measurement of BPA concentrations in water is important for evaluating compliance with water quality standards or environmental risk levels of the harmful compound in the environment. The sensor in this work is porous, conducting, interdigitated electrodes that are formed by laser-induced carbonization of flexible polyimide sheets. BPA-specific aptamer is immobilized on the electrodes as the probe, and its binding with BPA at the electrode surface is detected by capacitive sensing. The binding process is aided by ac electroosmotic effect that accelerates the transport of BPA molecules to the nanoporous graphene-like structured electrodes. The sensor achieved a limit of detection of 58.28 aM with a response time of 20 s. The sensor is further applied for recovery analysis of BPA spiked in surface water. This work provides an affordable platform for highly sensitive, real time, and field-deployable BPA surveillance critical to the evaluation of the ecological impact of BPA exposure.
机译:这项工作提出了一种基于适体的,高灵敏度和特异性的传感器,用于双酚A(BPA)的原子级至飞摩尔级检测。由于BPA在许多产品中得到广泛使用,因此BPA在其制造,使用过程中以及从全世界的垃圾掩埋场从废水排放中进入地表水。现场测量水中BPA的浓度对于评估是否符合水质标准或环境中有害化合物的环境风险水平很重要。这项工作中的传感器是多孔的,导电的,相互交叉的电极,这些电极是通过激光诱导的柔性聚酰亚胺片碳化而形成的。 BPA特异性适体作为探针固定在电极上,并通过电容感应检测其与BPA在电极表面的结合。交流电渗透效应可促进结合过程,交流电渗透效应可加速BPA分子向纳米多孔石墨烯样结构化电极的运输。传感器在20 s的响应时间内达到了58.28 aM的检测极限。该传感器进一步应用于加标在地表水中的BPA的回收率分析。这项工作为高度敏感,实时和可现场部署的BPA监视提供了一个可负担的平台,这对于评估BPA暴露的生态影响至关重要。

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