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Epitaxial Graphene Sensors Combined with 3D Printed Microfluidic Chip for Heavy Metals Detection

机译:外延石墨烯传感器与3D打印微流控芯片相结合用于重金属检测

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摘要

Two-dimensional materials may constitute key elements in the development of a sensing platform where extremely high sensitivity is required, since even minimal chemical interaction can generate appreciable changes in the electronic state of the material. In this work, we investigate the sensing performance of epitaxial graphene on Si-face 4H-SiC (EG/SiC) for liquid-phase detection of heavy metals (e.g., Pb). The integration of preparatory steps needed for sample conditioning is included in the sensing platform, exploiting fast prototyping using a 3D printer, which allows direct fabrication of a microfluidic chip incorporating all the features required to connect and execute the Lab-on-chip (LOC) functions. It is demonstrated that interaction of Pb2+ ions in water-based solutions with the EG enhances its conductivity exhibiting a Langmuir correlation between signal and Pb2+ concentration. Several concentrations of Pb2+ solutions ranging from 125 nM to 500 ?μM were analyzed showing good stability and reproducibility over time.
机译:二维材料可能是需要极高灵敏度的感测平台开发中的关键要素,因为即使最小的化学相互作用也会在材料的电子状态中产生明显的变化。在这项工作中,我们研究了Si面4H-SiC(EG / SiC)上外延石墨烯对液相检测重金属(例如Pb)的传感性能。传感平台中包括样品调理所需的准备步骤的集成,并利用3D打印机开发了快速原型制作技术,该技术可直接制造包含连接和执行芯片实验室(LOC)所需的所有功能的微流控芯片职能。结果表明,水基溶液中Pb2 +离子与EG的相互作用增强了其电导率,在信号和Pb2 +浓度之间表现出Langmuir相关性。分析了浓度范围为125 nM至500 µM的Pb2 +溶液的几种浓度,显示出良好的稳定性和可重复性。

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