Ionization-based gas sensor using aligned MWCNTs array

A. R. Kermany, N. M. Mohamed, B. Singh
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引用次数: 1

Abstract

Current gas sensors are mainly categorized into two modes of operation; chemical type operating by gas adsorption and physical type using ionization method. Chemical type conductivity-based gas detectors are large in size, they operate at high temperatures, and their response time is slow. Moreover most of them are only capable of detecting single type gases due to their low selectivity. Physical type ionization-based sensors have better selectivity and response time, but they are still huge and bulky. Both chemical and physical type gas detectors are using semiconductor materials as their sensing elements. With the discovery of nanomaterials, different types of sensing elements have been investigated to produce gas sensors which are smaller in size, one of which is carbon nanotubes (CNTs). Development of high performance sensor is now focused towards CNT-based sensors because of their inherent properties such as small size, large surface area and high electrical conductivity. CNTs based sensors are smaller in size; they have lower power consumption, higher sensitivity and better selectivity compared to existing semiconducting gas sensors. CNT-based gas sensors operate in room temperature which will result in safer environment. The work investigates the structural and electrical characterization of carbon nanotubes array for suitability as an effective sensing element in the ionization-based gas sensor.
基于电离的MWCNTs阵列气体传感器
目前的气体传感器主要分为两种工作模式;化学型采用气体吸附,物理型采用电离法。化学型电导率型气体探测器体积大,工作温度高,响应时间慢。此外,由于它们的选择性低,大多数只能检测单一类型的气体。物理型电离传感器具有更好的选择性和响应时间,但仍然体积庞大。化学型和物理型气体探测器都采用半导体材料作为传感元件。随着纳米材料的发现,人们研究了不同类型的传感元件来制造尺寸更小的气体传感器,其中一种是碳纳米管。基于碳纳米管的传感器具有体积小、表面积大、导电性高等固有特性,是目前高性能传感器的发展方向。基于碳纳米管的传感器尺寸更小;与现有的半导体气体传感器相比,它们具有更低的功耗,更高的灵敏度和更好的选择性。基于碳纳米管的气体传感器可以在室温下工作,从而提高工作环境的安全性。研究了碳纳米管阵列的结构和电学特性,以确定其是否适合作为基于电离的气体传感器的有效传感元件。
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