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Determination of individual contact interfaces in carbon nanotube network-based transistors

机译:基于碳纳米管网络的晶体管中各个接触界面的确定

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摘要

Carbon nanotubes (CNTs) used as semiconducting channels induce high mobility, thermal conductivity, mechanical flexibility, and chemical stability in field-effect, thin-film transistors (TFTs). However, the contact interfaces in CNT-TFTs have contact resistances that are difficult to reduce; this contact resistance can eventually limit the overall performance of CNT-TFTs. The contact interface between the source/drain electrodes and CNTs, especially for those CNT-TFTs in which the channel comprises randomly networked CNTs, plays a particularly dominant role in determining the performance and degree of variability in CNT-TFTs. However, no studies have reported a determination method that individually extracts each contact resistance at the source/drain electrodes. The present work presents an efficient method for directly determining the contact interfaces in CNT-TFTs by extracting each contact resistance produced at the source (R S) and drain (R D) electrodes. Moreover, we comprehensively simulated the randomly networked CNTs using an in-depth Monte-Carlo method, which provides an efficient method for visualizing the uniformity of a CNT network with various controllable CNT parameters. The proposed method provides guidance and a means for optimizing the design of the CNT network channel in CNT-TFTs and additional insights into improving the performance of CNT-TFTs.
机译:用作半导体通道的碳纳米管(CNT)在场效应薄膜晶体管(TFT)中具有高迁移率,导热性,机械柔韧性和化学稳定性。但是,CNT-TFT中的接触界面的接触电阻难以降低。这种接触电阻最终会限制CNT-TFT的整体性能。源/漏电极与CNT之间的接触界面,特别是对于其中通道包含随机网状CNT的那些CNT-TFT,在确定CNT-TFT的性能和可变性方面起特别主要的作用。但是,没有研究报告确定单独提取源/漏电极上的每个接触电阻的确定方法。本工作提出了一种有效的方法,可通过提取在源极(R S)和漏极(R D)电极上产生的每个接触电阻来直接确定CNT-TFT中的接触界面。此外,我们使用深入的蒙特卡洛方法全面模拟了随机联网的CNT,这为可视化具有各种可控CNT参数的CNT网络的均匀性提供了一种有效的方法。所提出的方法为优化CNT-TFT中CNT网络通道的设计提供了指导和手段,并为提高CNT-TFT的性能提供了其他见解。

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