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Solution-gated graphene field effect transistors integrated in microfluidic systems and used for flow velocity detection

机译:集成在微流系统中的溶液门控石墨烯场效应晶体管,用于流速检测

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Solution-gated graphene field effect transistors (SGGT) were integrated in microfluidic systems. The transfer characteristics of a SGGT with an Ag/AgCl gate electrode shifted horizontally with the change of the ionic concentration of KCl solution in the microchannel and the relationship can be fitted with the Nernst equation, which was attributed to the change of the potential drop at the Ag/AgCl electrode. Therefore the gate electrode is one important factor for the ion sensitive property of the SGGT. Then SGGTs were used as flow velocity sensors, which were based on measuring the streaming potentials in microfluidic channels. A linear relationship between the shift of the transfer curve of the SGGT and the flow velocity was obtained, indicating that the SGGT is a promising transducer for measuring flow velocity in a microchip. Since the streaming potential is influenced by the three physical quantities, including the flow velocity, the ionic strength of the fluid and the zeta potential of the substrate, the device can be used for sensing any one of the three quantities when the other two were known. It is noteworthy that SGGTs have been used for various types of chemical and biological sensors. Array of the devices integrated in multichannel microchips are expected to find many important applications in the lab-on-a-chip systems in the future.
机译:溶液门控石墨烯场效应晶体管(SGGT)集成在微流体系统中。 Ag / AgCl栅电极的SGGT的传输特性随微通道中KCl溶液中离子浓度的变化而水平移动,并且该关系可以与能斯特方程拟合,这归因于电势下降的变化。 Ag / AgCl电极。因此,栅电极是SGGT对离子敏感的重要因素之一。然后将SGGT用作流速传感器,该传感器基于测量微流体通道中的流电势。获得了SGGT传递曲线的位移与流速之间的线性关系,这表明SGGT是用于测量微芯片中流速的有希望的换能器。由于流电势受三个物理量的影响,包括流速,流体的离子强度和基板的ζ电势,因此当已知另外两个量时,该设备可用于感测这三个量中的任何一个。值得注意的是,SGGT已用于各种类型的化学和生物传感器。集成在多通道微芯片中的设备阵列有望在未来的片上实验室系统中找到许多重要的应用。

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