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一种基于热毛细对流的便携式微流控电化学传感平台,用于快速检测有害金属铅,该平台使用3D Ag-rGO-f-Ni(OH)/NF作为信号放大元件。

A portable microfluidic electrochemical sensing platform for rapid detection of hazardous metal Pb based on thermocapillary convection using 3D Ag-rGO-f-Ni(OH)/NF as a signal amplifying element.

作者信息

Ma Shangshang, Zhao Wei, Zhang Qing, Zhang Keying, Liang Chong, Wang Dingkai, Liu Xutang, Zhan Xijie

机构信息

School of Chemical Engineering&Technology, China University of Mining and Technology, Xuzhou 221100, China; Key Laboratory of Spin Electron and Nanomaterials of Anhui Higher Education Institutes, School of Chemistry and Chemical Engineering, Suzhou University, Suzhou 234000, China.

School of Chemical Engineering&Technology, China University of Mining and Technology, Xuzhou 221100, China.

出版信息

J Hazard Mater. 2023 Apr 15;448:130923. doi: 10.1016/j.jhazmat.2023.130923. Epub 2023 Feb 1.

Abstract

Heavy metal pollution is causing a great threat to ecological environment and public health, which needs an efficient strategy for monitoring. A portable microfluidic electrochemical sensing system was developed for the determination of heavy metal ions. Herein, the detection of Pb was chosen as a model, and a microfluidic electrochemical sensing chip relying on a smartphone-based electrochemical workstation was proposed for rapid detection Pb with the assistance of thermocapillary convection result from the formed temperature gradient. The 3D Ag-rGO-f-Ni(OH)/NF composites, prepared by one-step hydrothermal method without any Ni precursor salt, were used to further amplify electrochemical signals under the synergistic effect of thermocapillary convection. The thermocapillary convection could accelerate the preconcentration process and shorten the detection time (save 300 s of preconcentration time). The fabricated system exhibited the exceptional competence for monitoring of Pb range from 0.01 μg/L to 2100 μg/L with a low detection limit (LOD) of 0.00464 μg/L. Furthermore, this portable system has been successfully demonstrated for detecting Pb (0.01 μg/L to 2100 μg/L) in river water (LOD = 0.00498 μg/L), fish (LOD = 0.00566 μg/L) and human serum samples (LOD = 0.00836 μg/L), and the results were consistent with inductively coupled plasma-mass spectrometry (ICP-MS). The proposed novel sensing platform provides a cost-effectiveness, rapidly responding and ease-to-use pathway for analysis of heavy metal ions in real samples and shows great potential in point-of-care testing.

摘要

重金属污染正给生态环境和公众健康造成巨大威胁,这需要一种高效的监测策略。开发了一种用于测定重金属离子的便携式微流控电化学传感系统。在此,选择铅的检测作为模型,提出了一种基于智能手机的电化学工作站的微流控电化学传感芯片,借助形成的温度梯度产生的热毛细对流来快速检测铅。通过一步水热法制备的3D Ag-rGO-f-Ni(OH)/NF复合材料,无需任何镍前驱体盐,在热毛细对流的协同作用下用于进一步放大电化学信号。热毛细对流可加速预富集过程并缩短检测时间(节省300秒的预富集时间)。所制备的系统在监测0.01μg/L至2100μg/L的铅范围时表现出卓越的能力,检测限低至0.00464μg/L。此外,该便携式系统已成功用于检测河水(检测限=0.00498μg/L)、鱼类(检测限=0.00566μg/L)和人血清样本(检测限=0.00836μg/L)中的铅(0.01μg/L至2100μg/L),结果与电感耦合等离子体质谱法(ICP-MS)一致。所提出的新型传感平台为实际样品中重金属离子的分析提供了一种经济高效、响应迅速且易于使用的途径,并在即时检测中显示出巨大潜力。

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