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基于无孔无机纳米颗粒的湿度传感器:湿度滞后和响应时间的评估

Nonporous Inorganic Nanoparticle-Based Humidity Sensor: Evaluation of Humidity Hysteresis and Response Time.

作者信息

Kano Shinya, Mekaru Harutaka

机构信息

Sensing System Research Center, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba 305-8564, Japan.

出版信息

Sensors (Basel). 2020 Jul 10;20(14):3858. doi: 10.3390/s20143858.

Abstract

Fast-response humidity sensors using nanomaterials are attractive and have been intensively studied. Among the various nanomaterials, nonporous inorganic nanoparticles are suitable for use in humidity sensitive films for sensors. Here, we focus on a nonporous inorganic nanoparticle film and investigate a humidity sensor using the film. Hysteresis error and a dynamic response to a change of humidity are fundamental specifications of humidity sensors. A humidity sensor using a 50 nm silica nanoparticle film shows a hysteresis error of 2% at 85% RH and a response/recovery time of 2.8/2.3 s in 30% RH to 70% RH. We also summarize response/recovery times and hysteresis errors of state-of-the-art humidity sensors. As compared to those of commercial sensors and porous nanoparticle-based sensors evaluated using saturated salt solutions, the fabricated sensor shows a comparative hysteresis error and shorter response time.

摘要

使用纳米材料的快速响应湿度传感器具有吸引力且已得到深入研究。在各种纳米材料中,无孔无机纳米颗粒适用于传感器的湿度敏感薄膜。在此,我们聚焦于一种无孔无机纳米颗粒薄膜,并研究使用该薄膜的湿度传感器。滞后误差和对湿度变化的动态响应是湿度传感器的基本规格。使用50纳米二氧化硅纳米颗粒薄膜的湿度传感器在85%相对湿度下显示出2%的滞后误差,在30%相对湿度至70%相对湿度范围内的响应/恢复时间为2.8/2.3秒。我们还总结了最先进湿度传感器的响应/恢复时间和滞后误差。与使用饱和盐溶液评估的商业传感器和基于多孔纳米颗粒的传感器相比,所制备的传感器显示出相当的滞后误差和更短的响应时间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1979/7411755/f52402328590/sensors-20-03858-g001.jpg

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