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Thin film nanotube transistors based on self-assembled, aligned, semiconducting carbon nanotube arrays

机译:基于自组装,对准的半导体碳纳米管阵列的薄膜纳米管晶体管

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摘要

Thin film transistors (TFTs) are now poised to revolutionize the display, sensor, and flexible electronics markets. However, there is a limited choice of channel materials compatible with low-temperature processing. This has inhibited the fabrication of high electrical performance TFTs. Single-walled carbon nanotubes (CNTs) have very high mobilities and can be solution-processed, making thin film CNT-based TFTs a natural direction for exploration. The two main challenges facing CNT-TFTs are the difficulty of placing and aligning CNTs over large areas and low on/off current ratios due to admixture of metallic nanotubes. Here, we report the self-assembly and self-alignment of CNTs from solution into micron-wide strips that form regular arrays of dense and highly aligned CNT films covering the entire chip, which is ideally suitable for device fabrication. The films are formed from pre-separated, 99% purely semiconducting CNTs and, as a result, the CNT-TFTs exhibit simultaneously high drive currents and large on/off current ratios. Moreover, they deliver strong photocurrents and are also both photo- and electroluminescent.
机译:现在,薄膜晶体管(TFT)有望彻底改变显示器,传感器和柔性电子市场。但是,与低温处理兼容的通道材料的选择有限。这抑制了高电性能TFT的制造。单壁碳纳米管(CNTs)具有很高的迁移率,并且可以进行固溶处理,这使基于CNT的薄膜TFT成为探索的自然方向。 CNT-TFT面临的两个主要挑战是,由于金属纳米管的混合,在大面积上放置和排列CNT的难度以及开/关电流比很低。在这里,我们报道了碳纳米管的自组装和自对准,从溶液到微米级的条带,形成覆盖整个芯片的致密且高度对准的CNT薄膜的规则阵列,非常适合器件制造。膜由预分离的99%纯半导体CNT形成,结果,CNT-TFT同时显示出高驱动电流和大开/关电流比。此外,它们提供强大的光电流,并且同时具有光致发光和电致发光特性。

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