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基于新型低电压发射的分支碳纳米管结构的气敏特性

Gas sensing properties of branched carbon nanotube-based structures using a novel low voltage emission.

作者信息

Darbari S, Azimi S, Abdi Y, Mohajerzadeh S

机构信息

Thin Film and Nano-Electronic Lab, School of Electrical and Computer Engineering, University of Tehran, Tehran 1439957131, Iran.

出版信息

J Nanosci Nanotechnol. 2012 Nov;12(11):8666-70. doi: 10.1166/jnn.2012.6812.

Abstract

Branched carbon nanostructures have been successfully grown on interdigital comb-like structures for a gas sensing application. Field emission scanning electron microscopy has been utilized to investigate the morphology and structure of the grown nanostructures at different stages of growth process. Tunneling current of the fabricated sensor has been measured when a monotonically increasing voltage is applied between the electrodes. The effect of exposure to three different gases on the measured current has been studied. A data processing on the measured current voltage characteristics results in the evolution of various peaks at distinct voltages which depends on the type of the gas.

摘要

支链碳纳米结构已成功生长在叉指梳状结构上,用于气体传感应用。场发射扫描电子显微镜已被用于研究生长纳米结构在生长过程不同阶段的形态和结构。当在电极之间施加单调增加的电压时,已测量了所制备传感器的隧道电流。研究了暴露于三种不同气体对测量电流的影响。对测量的电流电压特性进行数据处理,会在不同电压下产生各种峰值的演变,这取决于气体的类型。

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