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首页> 外文期刊>Semiconductor Manufacturing, IEEE Transactions on >Research of Stability and Interference With the Potentiometric Flexible Arrayed Glucose Sensor Based on Microfluidic Framework
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Research of Stability and Interference With the Potentiometric Flexible Arrayed Glucose Sensor Based on Microfluidic Framework

机译:基于微流控框架的电位柔性阵列葡萄糖传感器的稳定性和干扰性研究

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The excellent stability and anti-interference of the flexible arrayed glucose sensor based on microfluidic framework were successfully fabricated in this research. First, the ruthenium dioxide sensing membranes were deposited on the polyethylene terephthalate by the radio frequency sputtering technology. Because the ruthenium (Ru) was better catalyst which commonly used in the hydrogenated reaction, the Ru was chosen as the sensing membrane. Second, the conducted wires and the insulation layer were prepared by screen-printed technology. Nafion could increase the stability and prevent the interferences from passing the sensing membrane. Finally, the mixed solution was doped on the sensing membrane by entrapment method that the glucose sensor was successfully fabricated. In order to get the low consumption and decrease required volume of fluid, we combined the flexible arrayed glucose sensor and the microfluidic framework. The sensitivity, stability and anti-interference of glucose sensor based on the microfluidic framework were investigated. According to experimental results, the linearity was 0.994 and the average sensitivity was 0.192 mV/(mg/dL) at the best flow rate of the dynamical condition ( L/min).
机译:本研究成功地构建了基于微流体框架的柔性阵列式葡萄糖传感器的优异稳定性和抗干扰性。首先,通过射频溅射技术将二氧化钌传感膜沉积在聚对苯二甲酸乙二醇酯上。由于钌(Ru)是氢化反应中常用的较好的催化剂,因此选择Ru作为传感膜。其次,通过丝网印刷技术制备导线和绝缘层。 Nafion可以增加稳定性,并防止干扰物穿过传感膜。最后,通过包埋法将混合溶液掺杂在传感膜上,从而成功制备了葡萄糖传感器。为了获得低消耗并减少所需的液体量,我们将柔性阵列式葡萄糖传感器和微流体框架相结合。研究了基于微流控框架的葡萄糖传感器的灵敏度,稳定性和抗干扰性。根据实验结果,在最佳动态条件下(L / min),线性度为0.994,平均灵敏度为0.192 mV /(mg / dL)。

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