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基于碳纳米管薄膜作为沟道的晶圆级场效应晶体管型传感器用于检测 ppb 级别的硫化氢。

Wafer-Scale Field-Effect Transistor-Type Sensor Using a Carbon Nanotube Film as a Channel for Ppb-Level Hydrogen Sulfide Detection.

机构信息

School of Physics and Optoelectronics & Hunan Institute of Advanced Sensing and Information Technology, Xiangtan University, Xiangtan, Hunan 411105, P. R. China.

College of Physics and Electronics Engineering, Hengyang Normal University, Hengyang 421002, P. R. China.

出版信息

ACS Sens. 2023 Aug 25;8(8):3060-3067. doi: 10.1021/acssensors.3c00653. Epub 2023 Jul 21.

Abstract

Sulfur hexafluoride is widely used in power equipment because of its excellent insulation and arc extinguishing properties. However, severe damage to power equipment may be caused and a large-scale collapse of the power grid may occur when SF is decomposed into HS, SOF, and SOF. It is difficult to detect the SF concentration as it is a kind of inert gas. Generally, the trace gas decomposed in the early stage of SF is detected to achieve the function of early warning. Consequently, it is of great significance to realize the real-time detection of trace gases decomposed from SF for the early fault diagnosis of power equipment. In this work, a wafer-scale gate-sensing carbon-based FET gas sensor is fabricated on a four-inch carbon wafer for the detection of HS, a decomposition product of SF. The carbon nanotubes with semiconductor properties and the noble metal Pt are respectively used as a channel and a sensing gate of the FET-type gas sensor, and the channel transmission layer and the sensing gate layer each play an independent role and do not interfere with each other by introducing the gate dielectric layer YO, giving full play to their respective advantages to forming an integrated sensor of gas detection and signal amplification. The detection limit of the as-prepared gate-sensing carbon-based FET gas sensor can reach 20 ppb, and its response deviation is not more than 3% for the different batches of gas sensors. This work provides a potentially useful solution for the industrial production of miniaturized and integrated gas sensors.

摘要

六氟化硫由于其优异的绝缘和灭弧性能而被广泛应用于电力设备中。然而,当 SF 分解为 HS、SOF 和 SOF 时,可能会对电力设备造成严重损坏,导致电网大规模崩溃。由于 SF 是一种惰性气体,因此很难检测其浓度。通常,检测 SF 早期分解的痕量气体,以实现预警功能。因此,实现 SF 分解的痕量气体的实时检测对于电力设备的早期故障诊断具有重要意义。在这项工作中,在四英寸的碳晶圆上制造了一种晶圆级栅极感应碳基 FET 气体传感器,用于检测 SF 的分解产物 HS。具有半导体性质的碳纳米管和贵金属 Pt 分别用作 FET 型气体传感器的通道和传感栅极,并且通过引入栅介质层 YO,使通道传输层和传感栅极层各自发挥独立作用,互不干扰,充分发挥各自的优势,形成气体检测和信号放大的集成传感器。所制备的栅极感应碳基 FET 气体传感器的检测限可达 20 ppb,其对不同批次气体传感器的响应偏差不超过 3%。这项工作为小型化和集成气体传感器的工业化生产提供了一种有潜在用途的解决方案。

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