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Analysis of Chloride Ion Sensor Modified by Graphene Oxide Under Microfluid Flow

机译:微流体流动下石墨烯改性氯离子传感器的分析

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In this paper, we used a thermal evaporation system and a radio-frequency sputtering system to fabricate aluminum (Al) electrodes and indium-gallium-zinc oxide (IGZO) sensing membranes on the polyethylene terephthalate substrate. The IGZO/Al chloride ion sensor modified by graphene oxide has array sensing windows to avoid sensor malfunction. We used a screen printing technology to fabricate the sensor that made sensor a flexible structure. It can be adapted to many environments. The chloride ion sensor was immersed in the different concentrations of NaCl solutions from 10(-5) to 1 M to measure the sensing characteristics of the chloride ion sensor. From the static measurement, the average sensitivity and linearity of the chlorine ion sensor were 60.536 mV/pCl and 0.973, respectively. We integrated microfluidic framework to measure the dynamic characteristic. From the dynamic measurement, we could know that the best average sensitivity and linearity of the chloride ion sensor for the flow rate of 20 mu L/min were 64.639 mV/pCl and 0.972, respectively. To confirm the non-ideal effect of chloride ion, the hysteresis voltages of chloride ion in the different concentrations of NaCl solutions in two different cycles were 2.700 and 2.789 mV, respectively.
机译:在本文中,我们使用了热蒸发系统和射频溅射系统,以制造在聚对苯二甲酸乙二醇酯基材上的铝(Al)电极和镓 - 氧化锌(IgZO)感测膜上。通过氧化石墨烯改性的IgZO / Al氯离子传感器具有阵列感测窗口,以避免传感器故障。我们使用丝网印刷技术来制造传感器,使传感器成为柔性结构。它可以适应许多环境。将氯离子传感器浸入10(-5)至1μm的不同浓度的NaCl溶液中以测量氯离子传感器的感测特性。从静态测量,氯离子传感器的平均灵敏度和线性分别为60.536mV / pcl和0.973。我们集成了微流体框架以测量动态特性。从动态测量,我们可以知道,用于20μl/ min的流速的最佳平均灵敏度和线性分别为64.639mV / pcl和0.972。为了确认氯离子的非理想作用,氯离子在两种不同循环中不同浓度的NaCl溶液中的滞后电压分别为2.700和2.789mV。

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