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首页> 外文期刊>Sensors >High-Sensitivity and Low-Hysteresis Porous MIMType Capacitive Humidity Sensor Using Functional Polymer Mixed with TiO2 Microparticles
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High-Sensitivity and Low-Hysteresis Porous MIMType Capacitive Humidity Sensor Using Functional Polymer Mixed with TiO2 Microparticles

机译:使用功能性聚合物与TiO2微粒混合的高灵敏度,低滞后多孔MIM型电容式湿度传感器

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摘要

In this study, a high-sensitivity and low-hysteresis porous metal–insulator–metal-type capacitive humidity sensor is investigated using a functional polymer mixed with TiO2 microparticles. The humidity sensor consists of an optimally designed porous top electrode, a functional polymer humidity sensitive layer, a bottom electrode, and a glass substrate. The porous top electrode is designed to increase the contact area between the sensing layer and water vapor, leading to high sensitivity and quick response time. The functional polymer mixed with TiO2 microparticles shows excellent hysteresis under a wide humidity-sensing range with good longterm stability. The results show that as the relative humidity ranges from 10% RH to 90% RH, the proposed humidity sensor achieves a high sensitivity of 0.85 pF/% RH and a fast response time of less than 35 s. Furthermore, the sensor shows an ultra-low hysteresis of 0.95% RH at 60% RH, a good temperature dependence, and a stable capacitance value with a maximum of 0.17% RH drift during 120 h of continuous test.
机译:在这项研究中,使用功能性聚合物与TiO2微粒混合研究了高灵敏度和低滞后的多孔金属-绝缘体-金属型电容式湿度传感器。湿度传感器由优化设计的多孔顶部电极,功能聚合物湿度敏感层,底部电极和玻璃基板组成。多孔顶部电极的设计可增加传感层与水蒸气之间的接触面积,从而实现高灵敏度和快速响应时间。与TiO2微粒混合的功能性聚合物在宽的湿度感应范围内具有出色的滞后性,并具有良好的长期稳定性。结果表明,当相对湿度在10%RH至90%RH的范围内时,所提出的湿度传感器可实现0.85 pF /%RH的高灵敏度和不到35 s的快速响应时间。此外,该传感器在60%RH时表现出0.95%RH的超低滞后性,具有良好的温度依赖性,并且在120 h连续测试中具有稳定的电容值,最大RH漂移为0.17%。

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