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Metal contact effect on the performance and scaling behavior of carbon nanotube thin film transistors

机译:影响性能和金属接触碳纳米管薄膜的扩展行为晶体管

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摘要

Metal-tube contact is known to play an important role in carbon nanotube field-effect transistors (CNT-FETs) which are fabricated on individual CNTs. Less attention has been paid to the contact effect in network type carbon nanotube thin film transistors (CNT-TFTs). In this study, we demonstrate that contact plays an even more important role in CNT-TFTs than in CNT-FETs. Although the Schottky barrier height at the metal-tube contact can be tuned by the work function of the metal, similar to the case in CNT-FETs, the contact resistance (R-c) forms a much higher proportion of the total resistance in CNT-TFTs. Interestingly, the contact resistivity was found to increase with channel length, which is a consequence of the percolating nature of the transport in CNT films, and this behavior does not exist in CNT-FETs and normal 2D Ohmic conductors. Electrical transport in CNT-TFTs has been predicted to scale with channel length by stick percolation theory. However, the scaling behavior is also impacted, or even covered up by the effect of R-c. Once the contact effect is excluded, the covered scaling behavior can be revealed correctly. A possible way of reducing R-c in CNT-TFTs was proposed. We believe the findings in this paper will strengthen our understanding of CNT-TFTs, and even accelerate the commercialization of CNT-TFT technology.
机译:金属管是扮演着一个重要的联系在碳纳米管场效应晶体管中的作用(CNT-FETs)对个人制作的碳纳米管。碳纳米管薄膜效应在网络类型晶体管(CNT-TFTs)。扮演一个更加证明接触重要的作用比CNT-FETs CNT-TFTs。尽管的肖特基势垒高度金属管接触可以通过调优工作金属的函数,类似的情况CNT-FETs,接触电阻(电阻-电容)形成更高比例的总阻力CNT-TFTs。被发现与通道长度增加,哪个的渗透特性的结果吗运输在问电影,这种行为不存在于CNT-FETs和正常的2 d欧姆导体。预计规模与通道长度渗流理论。行为也受到影响,甚至掩盖了电阻-电容的影响。排除在外,覆盖的扩展行为正确显示。提出了在CNT-TFTs电阻-电容。本文将加强我们的发现理解CNT-TFTs,甚至加速CNT-TFT技术的商业化。

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