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Macroelectronic integrated circuits using high-performance separated carbon nanotube thin-film transistors

机译:使用高性能分离碳纳米管薄膜晶体管的宏观电子集成电路

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摘要

Macroelectronic integrated circuits are widely used in applications such as flat panel display and transparent electronics, as well as flexible and stretchable electronics. However, the challenge is to find the channel material that can simultaneously offer low temperature processing, high mobility, transparency, and flexibility. Here in this paper, we report the application of high-performance separated nanotube thin-film transistors for macroelectronic integrated circuits. We have systematically investigated the performance of thin-film transistors using separated nanotubes with 95% and 98% semiconducting nanotubes, and high mobility transistors have been achieved. In addition, we observed that while 95% semiconducting nanotubes are ideal for applications requiring high mobility (up to 67 cm2 V-1 s-1) such as analog and radio frequency applications, 98% semiconducting nanotubes are ideal for applications requiring high on/off ratios (>104 with channel length down to 4 μm). Furthermore, integrated logic gates such as inverter, NAND, and NOR have been designed and demonstrated using 98% semiconducting nanotube devices with individual gating, and symmetric input/output behavior is achieved, which is crucial for the cascading of multiple stages of logic blocks and larger scale integration. Our approach can serve as the critical foundation for future nanotube-based thin-film macroelectronics.
机译:宏观电子集成电路广泛用于诸如平板显示器和透明电子器件以及柔性和可拉伸电子器件的应用中。然而,挑战在于找到可以同时提供低温处理,高迁移率,透明性和柔韧性的通道材料。在本文中,我们报告了高性能分离式纳米管薄膜晶体管在宏观电子集成电路中的应用。我们已经系统地研究了使用分离的纳米管和95%和98%的半导体纳米管的薄膜晶体管的性能,并且已经实现了高迁移率晶体管。此外,我们观察到,尽管95%的半导体纳米管非常适合要求高迁移率(高达67 cm2 V-1 s-1)的应用,例如模拟和射频应用,但98%的半导体纳米管却是需要高导通/截止比(> 104,通道长度降至4μm)。此外,已经使用98%的具有单独门控功能的半导体纳米管器件设计并演示了集成逻辑门(例如反相器,NAND和NOR),并且实现了对称的输入/输出行为,这对于级联多级逻辑模块和大规模整合。我们的方法可以作为未来基于纳米管的薄膜宏电子学的关键基础。

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