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One-Dimensional Nanostructure Field-Effect Sensors for Gas Detection

机译:用于气体检测的一维纳米结构场效应传感器

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摘要

Recently; one-dimensional (1D) nanostructure field-effect transistors (FETs) have attracted much attention because of their potential application in gas sensing. Microanoscaled field-effect sensors combine the advantages of 1D nanostructures and the characteristic of field modulation. 1D nanostructures provide a large surface area-volume ratio; which is an outstanding advantage for gas sensors with high sensitivity and fast response. In addition; the nature of the single crystals is favorable for the studies of the response mechanism. On the other hand; one main merit of the field-effect sensors is to provide an extra gate electrode to realize the current modulation; so that the sensitivity can be dramatically enhanced by changing the conductivity when operating the sensors in the subthreshold regime. This article reviews the recent developments in the field of 1D nanostructure FET for gas detection. The sensor configuration; the performance as well as their sensing mechanism are evaluated.
机译:最近;一维(1D)纳米结构场效应晶体管(FET)由于其在气体传感中的潜在应用而备受关注。微米/纳米级场效应传感器结合了1D纳米结构的优势和场调制特性。一维纳米结构提供较大的表面积-体积比;对于具有高灵敏度和快速响应的气体传感器而言,这是一个突出的优势。此外;单晶的性质有利于响应机理的研究。另一方面;场效应传感器的一个主要优点是提供了一个额外的栅电极来实现电流调制。因此,在亚阈值范围内操作传感器时,通过改变电导率可以大大提高灵敏度。本文回顾了用于气体检测的一维纳米结构FET领域的最新发展。传感器配置;评估其性能及其感应机制。

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