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BIO-INSPIRED FLOW SENSORS FABRICATED FROM CARBON NANOMATERIALS

机译:碳纳米材料制造的生物启发式流量传感器

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Carbon-based flow sensors can be made by embedding carbon nanotubes (CNT) into a polymeric substrate. Specifically, when a conductive aqueous solution flows over the surface of the exposed CNT, a flow-dependent voltage is generated. The carbonaceous flow sensors fabricated in our work were all tested in salt water (5% NaCl). In order to measure the surface coverage of the CNT coated sensors, the electrical resistance across the surface of each sample was measured. Electrical Impedance Spectroscopy (EIS) measurements were also carried out in order to understand the electrical relationship between the sensor and the salt water. In order to study the surface topology and morphology of the flow sensors, scanning electron microscopy (SEM) was used. Voltage measurements of sensors with different levels of resistance were tested in varying fluid velocities. The least resistive sensor showed small, but detectable changes in voltages, while higher resistance sensors showed less response. On the other hand, the average current did not change with varying flow conditions for any of the sensors.
机译:碳基流量传感器可以通过将碳纳米管(CNT)嵌入聚合物基体中制成。具体地,当导电水溶液在暴露的CNT的表面上流动时,产生取决于流量的电压。在我们的工作中制造的碳质流量传感器都在盐水(5%NaCl)中进行了测试。为了测量涂覆有CNT的传感器的表面覆盖率,测量了每个样品表面上的电阻。为了了解传感器与盐水之间的电关系,还进行了电阻抗谱(EIS)测量。为了研究流量传感器的表面拓扑和形态,使用了扫描电子显微镜(SEM)。在不同的流体速度下测试了具有不同电阻水平的传感器的电压测量值。电阻最低的传感器显示出较小但可检测到的电压变化,而电阻较高的传感器则显示出较小的响应。另一方面,对于任何一个传感器,平均电流都不会随着流动条件的变化而变化。

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