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Thin dielectric-layer-enabled low-voltage operation of fully printed flexible carbon nanotube thin-film transistors

机译:完全印刷柔性碳纳米管薄膜晶体管的薄介质层的低压操作

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摘要

The quality of printable dielectric layer has become one of the major obstacles to achieving high-performance fully printed transistors. A thick dielectric layer will require high gate voltage to switch the transistors on and off, which will cause high power dissipation in printed devices. In response to this challenge, fully printed carbon nanotube (CNT)-based thin-film transistors (TFTs) have been fabricated on flexible membranes such as polyimide and liquid crystal polymer using aerosol jet printing. These devices can be operated at bias voltages below 10 V (drain/gate voltages around 6 V). This is much smaller than the previously reported values for fully printed CNT-TFTs because of using xdi-dcs (mixture of poly(vinylphenol)/poly (methylsilsesquioxane)) as the dielectric and using a single printing method. The lower voltage is a consequence of a thin dielectric layer (similar to 300 nm) and good uniformity in the printed CNT network. The printed CNT-TFTs show on/off ratio >10(5), and mobility >5 cm(2)V(-1)s(-1). Layer-by-layer deposition of CNT allows highly uniform and dense network formation, and the optimization of the xdi-dcs concentration using natural butyl alcohol provides high-yield printing of a thin dielectric layer. Collectively, this work shows the potential of using fully printed CNT-TFTs in various flexible electronic applications such as wearable sensors, actuators, artificial skin, displays and wireless tags and antennas.
机译:可印刷介电层的质量已成为实现高性能完全印刷晶体管的主要障碍之一。厚介电层将需要高栅极电压以打开和关闭晶体管,这将在印刷设备中引起高功率耗散。响应于该挑战,在使用气溶胶喷射印刷的柔性膜等,已经在柔性膜如聚酰亚胺和液晶聚合物如聚酰亚胺和液晶聚合物上制造了完全印刷的碳纳米管(CNT)的基础薄膜晶体管(TFT)。这些装置可以在低于10 V的偏置电压下操作(漏极/栅极电压约为6 V)。由于使用XDI-DC(聚(乙烯基苯酚)/聚(甲基硅酸盐)/聚(甲基苯并)的混合物)作为电介质并使用单印刷方法,这比先前报道的完全印刷的CNT-TFT的值小得多。较低电压是薄介电层(类似于300nm)和印刷的CNT网络中的良好均匀性的结果。印刷的CNT-TFT显示开/关比> 10(5)和迁移率> 5cm(2)V(-1)S(-1)。 CNT的层逐层沉积允许高度均匀和致密的网络形成,并且使用天然丁醇的XDI-DCS浓度的优化提供了薄介电层的高屈服印刷。统称,这项工作表明,在各种灵活的电子应用中使用完全印刷的CNT-TFT,例如可穿戴传感器,致动器,人造皮肤,显示器和无线标签和天线。

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