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A Single-Walled Carbon Nanotube Network Gas Sensing Device

机译:单壁碳纳米管网络气体传感装置

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摘要

The goal of this research was to develop a chemical gas sensing device based on single-walled carbon nanotube (SWCNT) networks. The SWCNT networks are synthesized on Al2O3-deposted SiO2/Si substrates with 10 nm-thick Fe as the catalyst precursor layer using microwave plasma chemical vapor deposition (MPCVD). The development of interconnected SWCNT networks can be exploited to recognize the identities of different chemical gases by the strength of their particular surface adsorptive and desorptive responses to various types of chemical vapors. The physical responses on the surface of the SWCNT networks cause superficial changes in the electric charge that can be converted into electronic signals for identification. In this study, we tested NO2 and NH3 vapors at ppm levels at room temperature with our self-made gas sensing device, which was able to obtain responses to sensitivity changes with a concentration of 10 ppm for NO2 and 24 ppm for NH3.
机译:这项研究的目的是开发一种基于单壁碳纳米管(SWCNT)网络的化学气体传感设备。 SWCNT网络是使用微波等离子体化学气相沉积(MPCVD)在Al2O3沉积的SiO2 / Si基底上合成的,该基底具有10 nm厚的Fe作为催化剂前体层。可以利用互连的SWCNT网络的发展,通过其对各种类型的化学蒸气的特定表面吸附和脱附响应的强度来识别不同化学气体的身份。 SWCNT网络表面上的物理响应导致电荷的表面变化,可以将其转换为电子信号以进行识别。在这项研究中,我们使用自制的气体传感设备在室温下以ppm级测试了NO2和NH3蒸气,该设备能够获得对灵敏度变化的响应,其中NO2的浓度为10 ppm,NH3的浓度为24 ppm。

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