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碳纳米管晶体管中的热电子场发射输运。

Thermionic field emission transport in carbon nanotube transistors.

机构信息

Department of Electrical Engineering, University of Pittsburgh, Pittsburgh Pennsylvania 15219, United States.

出版信息

ACS Nano. 2011 Mar 22;5(3):1756-60. doi: 10.1021/nn102343k. Epub 2011 Feb 10.

Abstract

With experimental and analytical analysis, we demonstrate a relationship between the metal contact work function and the electrical transport properties saturation current (Isat) and differential conductance (σsd=∂Isd/∂Vsd) in ambient exposed carbon nanotubes (CNT). A single chemical vapor deposition (CVD) grown 6 mm long semiconducting single-walled CNT is electrically contacted with a statistically significant number of Hf, Cr, Ti, Pd, and Au electrodes, respectively. The observed exponentially increasing relationship of Isat and σsd with metal contact work function is explained by a theoretical model derived from thermionic field emission. Statistical analysis and spread of the data suggest that the conduction variability in same CNT devices results from differences in local surface potential of the metal contact. Based on the theoretical model and methodology, an improved CNT-based gas sensing device layout is suggested. A method to experimentally determine gas-induced work function changes in metals is also examined.

摘要

通过实验和分析,我们在暴露于环境中的碳纳米管(CNT)中证明了金属接触功函数与电输运性质饱和电流(Isat)和微分电导(σsd=∂Isd/∂Vsd)之间的关系。使用化学气相沉积(CVD)生长的 6 毫米长半导体单壁 CNT 分别与统计上数量众多的 Hf、Cr、Ti、Pd 和 Au 电极进行电接触。观察到的 Isat 和 σsd 随金属接触功函数呈指数增长的关系,可以用从热电子场发射推导出来的理论模型来解释。统计分析和数据的分散表明,同一 CNT 器件中的传导变化是由金属接触的局部表面电势差异引起的。基于该理论模型和方法,提出了一种改进的基于 CNT 的气体传感装置布局。还检查了一种用于实验确定金属中气体诱导功函数变化的方法。

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