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

Стабильный полимерный полупроводник, получаемый из раствора, с рекордно высокой подвижностью для печатных транзисторов
Ming Lin, Yunqi Liu, Huei Shuan Tan, Suo Hon Lim, Haibin Su, Gui Yu, Yan Zhao, Chong‐an Di, Yunlong Guo, Jun Li, Yuhua Zhou, Beng S. Ong
2012-10-18

flexible electronicshigh field-effect mobilityprinted thin-film transistorsring oscillator devicessolution-processable polymer semiconductor
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.
1
Exceptionally high-gain inverters and functional ring oscillators were demonstrated on flexible substrates.
2
Its structural framework supports fundamental investigations of charge transport in organic semiconductor systems.
3
Optimized solution-processable polymer semiconductors enable printed thin-film transistors with very high field-effect mobility and high on/off ratios.
4
The material advances the practical usability of organic semiconductors for high-performance, large-area flexible microelectronics.
5
The polymer semiconductor exhibits excellent shelf-life and operating stability under ambient conditions.

Solution-processable polymer semiconductor for printed thin-film transistors on flexible substrates

Field-effect mobility, switching performance, shelf-life, ambient operating stability, and device functionality of the polymer semiconductor in thin-film transistors, inverters, and ring oscillators

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2012-10-18
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Ming Lin
Yunqi Liu
Huei Shuan Tan
Suo Hon Lim
Haibin Su
Gui Yu
Yan Zhao
Chong‐an Di
Yunlong Guo
Jun Li
Yuhua Zhou
Beng S. Ong
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