Porous Dielectric Structure and Response Speed of Moisture Sensors

Ronak Ali, Aaron Swartz, Riasad Badhan, Reza Ilka, Yiju Wang, Jiangbiao He, Zhi Chen, Ning Ren, Z George Zhang, Gefei Wu, Roger England
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Abstract

We made moisture sensors using α-Al2O3 films as porous dielectric materials deposited through the anodic spark deposition (ASD). In this study, a variety number of small pores has been studied to investigate the response speed of moisture sensors. Three different surface morphologies have been studied using scanning electron microscopy (SEM). Sample DM23 has the maximum number of small pores. Small pores are defined as pore size ranging from 40 nm to several hundred nm. Sample TA40 has the minimum number of small pores. Sample FW06 has the medium number of small pores. We found that the sensor made from dielectric material with the maximum number of small pores has the fastest response speed, and that from the minimum number of small pores has the slowest response speed either from high humidity to low humidity or from low humidity to high humidity.
多孔介电结构与湿度传感器的响应速度
我们利用阳极电火花沉积(ASD)沉积的 α-Al2O3 薄膜作为多孔介电材料制作了湿度传感器。在这项研究中,我们研究了多种小孔,以探讨湿度传感器的响应速度。使用扫描电子显微镜(SEM)研究了三种不同的表面形态。样品 DM23 的小孔数量最多。小孔的定义是孔径从 40 纳米到几百纳米不等。样品 TA40 的小孔数量最少。样品 FW06 具有中等数量的小孔。我们发现,小孔数量最多的电介质材料制成的传感器响应速度最快,而小孔数量最少的电介质材料制成的传感器无论是从高湿度到低湿度还是从低湿度到高湿度的响应速度都最慢。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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