Sensors based on graphene nanoribbons and polyaniline nanochannels with graphene-graphene oxide contacts formed by ion etching

A. Lashkov, N. Yakunina, A. Romashkin, N. Struchkov, K. Tsarik
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引用次数: 1

Abstract

One of the ways to create highly sensitive gas sensors based on graphene is to modify graphene by forming nanometer-sized channels in it. In this work, ion beam etching was used for these purposes. The necessary doses of Ga+ focused ion beam (FIB) were found to etch graphene. Several different structures based on modified graphene have been manufactured and investigated. A method for manufacturing graphene structures with a width of less than 10 nm by Ga+ FIB has been found. Also, high conductivity for structures of nanogap with polyaniline (PANi) was found, which can be used as selective gas sensing structures. The paper presents the responses of structures with nano-channel of PANi between modified graphene electrodes to different concentrations of ammonia and water.
基于石墨烯纳米带和聚苯胺纳米通道的传感器,通过离子蚀刻形成石墨烯-氧化石墨烯接触
制造基于石墨烯的高灵敏度气体传感器的方法之一是通过在石墨烯上形成纳米尺寸的通道来修饰石墨烯。在这项工作中,离子束蚀刻被用于这些目的。发现所需剂量的Ga+聚焦离子束(FIB)可以蚀刻石墨烯。基于改性石墨烯的几种不同结构已经被制造和研究。发现了一种用Ga+ FIB制备宽度小于10nm的石墨烯结构的方法。此外,聚苯胺(PANi)纳米间隙结构具有高导电性,可作为选择性气敏结构。本文研究了改性石墨烯电极间具有聚苯胺纳米通道的结构对不同浓度氨和水的响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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