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Investigation of Humidity Sensor Effect in Silver Nanoparticle Ink Sensors Printed on Paper

机译:纸上印刷的纳米银墨水传感器中的湿度传感器效应研究

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Thin inkjet-printed tracks of silver nanoparticles have previously been observed to show a non-reversible decrease in resistance when exposed to a high degree of relative humidity and thus providing sensor functionality with a memory effect. This paper provides a more in-depth explanation of the observed humidity sensor effect that originates from inkjet-printed silver nanoparticle sensors on a paper substrate. It is shown that the geometry of the sensor has a large effect on the sensor's initial resistance, and therefore also on the sensor's resistive dynamic range. The importance of the sensor geometry is believed to be due to the amount of solvent from the ink interacting with the coating of the paper substrate, which in turn enables the diffusion of salts from the paper coating into the ink and thus affecting the silver ink.
机译:先前已观察到薄薄的喷墨印刷的银纳米颗粒轨迹在暴露于高度相对湿度时显示出不可逆的电阻降低,因此为传感器功能提供了记忆效应。本文提供了对所观察到的湿度传感器效果的更深入的解释,该效果源自纸质基材上的喷墨印刷银纳米颗粒传感器。结果表明,传感器的几何形状对传感器的初始电阻有很大的影响,因此对传感器的电阻动态范围也有很大的影响。认为传感器几何形状的重要性是由于来自油墨的溶剂量与纸基材的涂层相互作用,这又使盐从纸涂层扩散到油墨中并因此影响银油墨。

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