Ultrasensitive memristor-based gas sensor (gasistor) with gas-triggered switch and memory function for dilute NH3 detection

记忆电阻器 材料科学 功能(生物学) 纳米技术 工程类 电气工程 生物 进化生物学
作者
Peilun Qiu,Yuxiang Qin,Qing Xia
出处
期刊:Sensors and Actuators B-chemical [Elsevier BV]
卷期号:373: 132730-132730 被引量:38
标识
DOI:10.1016/j.snb.2022.132730
摘要

Accurately recording the time of toxic gas leakage is beneficial to find out the cause of the accident and evaluate the safety of the equipment. However, conventional gas sensors do not have the memory function without external storage devices. To develop gas sensors with both sensing and memory functions, memristor-based gas sensors have been proposed. The memristor-based gas sensors could be used as gas-triggered switch and gas sensors with a built-in memory, which was named gasistor. In this study, a TiO 2 -based gasistor was proposed for dilute NH 3 detection at room temperature (RT). The gasistor displayed bipolar resistive switching behavior, excellent repeatability and stability. Gas-sensing measurements showed that TiO 2 -based gasistor could be used for ultrasensitive detection of NH 3 . The response to 1 ppm NH 3 in the high resistance state (HRS) was as high as 164.2, and the response/recovery time was <1 s, respectively. Especially, as the NH 3 concentration decreased, the gasistor switched from the HRS to the low resistance state (LRS) and the NH 3 leakage time was recorded. Based on the experimental results, we propose a more realistic gas-triggered switch mechanism model, which can be used to provide a reference for the prediction of gas-triggered voltage and compliance voltage. • Memristor-based devices are used as gas sensors (gasistor). • The time of gas leakage is recorded by gasistor without additional storage device. • The gasistor can be used as a target gas flow switch. • The gasistor is ultra-sensitive to dilute NH 3 at room temperature • A more realistic gas-triggered switch mechanism model was proposed.
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