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Solution-processed single-wall carbon nanotube transistor arrays for wearable display backplanes

机译:用于可穿戴显示背板的解决方案处理的单壁碳纳米管晶体管阵列

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摘要

In this paper, we demonstrate solution-processed single-wall carbon nanotube thin-film transistor (SWCNT-TFT) arrays with polymeric gate dielectrics on the polymeric substrates for wearable display backplanes, which can be directly attached to the human body. The optimized SWCNT-TFTs without any buffer layer on flexible substrates exhibit a linear field-effect mobility of 1.5cm2/V-s and a threshold voltage of around 0V. The statistical plot of the key device metrics extracted from 35 SWCNT-TFTs which were fabricated in different batches at different times conclusively support that we successfully demonstrated high-performance solution-processed SWCNT-TFT arrays which demand excellent uniformity in the device performance. We also investigate the operational stability of wearable SWCNT-TFT arrays against an applied strain of up to 40%, which is the essential for a harsh degree of strain on human body. We believe that the demonstration of flexible SWCNT-TFT arrays which were fabricated by all solution-process except the deposition of metal electrodes at process temperature below 130oC can open up new routes for wearable display backplanes.
机译:在本文中,我们证明溶液处理的单壁碳纳米管薄膜晶体管(SWCNT-TFT)阵列上可穿戴显示器背板,其可以被直接连接到人体的聚合物基材的聚合物栅极电介质。优化的SWCNT的不的TFT在柔性基板上的任何缓冲层表现出1.5平方厘米/ V-s的线的场效应迁移率和大约0V的阈值电压。从在不同的时间制造的不同批次35 SWCNT的TFT的提取的关键设备度量的统计情节确凿地支持,我们成功地证明了这要求良好的均匀性在所述设备的性能的高性能溶液处理的SWCNT的TFT阵列。我们还研究可穿戴SWCNT的TFT阵列的操作稳定性针对高达40%的外加应变,这是应变对人体恶劣的程度是至关重要的。我们认为,这是由所有溶液的方法,除了金属电极在低于130℃的工艺温度的沉积制备的柔性SWCNT的TFT阵列的示范可以打开可穿戴显示器背板新的路由。

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