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A stable solution-processed polymer semiconductor with record high-mobility for printed transistors

机译:稳定的溶液处理聚合物半导体,具有记录晶体管的高迁移率

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Microelectronic circuits/arrays produced via high-speed printing instead of traditional photolithographic processes offer an appealing approach to creating the long-sought after, low-cost, large-area flexible electronics. Foremost among critical enablers to propel this paradigm shift in manufacturing is a stable, solution-processable, high-performance semiconductor for printing functionally capable thin-film transistors — fundamental building blocks of microelectronics. We report herein the processing and optimisation of solution-processable polymer semiconductors for thin-film transistors, demonstrating very high field-effect mobility, high on/off ratio, and excellent shelf-life and operating stabilities under ambient conditions. Exceptionally high-gain inverters and functional ring oscillator devices on flexible substrates have been demonstrated. This optimised polymer semiconductor represents a significant progress in semiconductor development, dispelling prevalent skepticism surrounding practical usability of organic semiconductors for high-performance microelectronic devices, opening up application opportunities hitherto functionally or economically inaccessible with silicon technologies, and providing an excellent structural framework for fundamental studies of charge transport in organic systems.. ? 2012 Macmillan Publishers Limited. All rights reserved
机译:通过高速印刷而不是传统的光刻工艺生产的微电子电路/阵列提供了一种吸引人的方法,可用于创造长期以来寻求的,低成本,大面积的柔性电子产品。推动制造范式转变的关键推动因素中,最重要的是一种稳定,可溶液处理的高性能半导体,用于印刷具有功能的薄膜晶体管-微电子学的基本组成部分。我们在此报告了用于薄膜晶体管的可溶液处理的聚合物半导体的处理和优化,展示了很高的场效应迁移率,高的开/关比以及在环境条件下极好的保质期和操作稳定性。出色的高增益逆变器和功能性环形振荡器已在柔性基板上得到了展示。这种经过优化的聚合物半导体代表了半导体开发方面的重大进步,消除了人们对有机半导体在高性能微电子设备中的实用性的普遍怀疑,为硅技术提供了迄今为止在功能上或经济上都无法获得的应用机会,并为基础研究提供了出色的结构框架有机系统中的电荷传输。 2012 Macmillan Publishers Limited。版权所有

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