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Microcrystallization of a Solution-Processable Organic Semiconductor in Capillaries for High-Performance Ambipolar Field Effect Transistors

机译:高性能双极场效应晶体管在毛细管中可溶液处理的有机半导体的微晶化

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We report on the use of microcrystallization in capillaries to fabricate patterned crystalline microstructures of the low-bandgap ambipolar quinoidal quaterthiophene derivative (QQT(CN)(4)) from a chloroform solution. Aligned needle -shaped QQT(CN)(4) crystals were formed in thin film microstructures using either open-or closed capillaries made of polydimethylsiloxane (PDMS). Their charge transport properties were evaluated in a bottom-gate top-contact 10(-5) transistor configuration. Hole and electron mobilities were found to be as high as 0.17 and 0.083 cm(2) V-1 s(-1), respectively, approaching the values previously obtained in individual QQT(CN)(4) single crystal microneedles. It was possible to control the size of the needle crystals and the microline arrays by adjusting the structure of the PDMS mold and the concentration of QQT(CN)(4) solution. These results demonstrate that the microcrystallization in capillaries technique can be used to simultaneously pattern organic needle single crystals and control the microcrystallization processes. Such a simple and versatile method should be promising for the future development of high-performance organic electronic devices.
机译:我们报告了在毛细管中使用微晶从氯仿溶液中制备低带隙双极性喹啉类四噻吩衍生物(QQT(CN)(4))的图案化晶体微结构。使用由聚二甲基硅氧烷(PDMS)制成的开式或闭式毛细管,在薄膜微结构中形成对准的针状QQT(CN)(4)晶体。在底栅顶接触10(-5)晶体管配置中评估了它们的电荷传输特性。发现空穴和电子迁移率分别高达0.17和0.083 cm(2)V-1 s(-1),接近先前在单个QQT(CN)(4)单晶微针中获得的值。通过调整PDMS模具的结构和QQT(CN)(4)溶液的浓度,可以控制针状晶体和微线阵列的大小。这些结果表明,毛细管中的微晶化技术可用于同时图案化有机针状单晶并控制微晶化过程。这种简单而通用的方法对于高性能有机电子器件的未来发展应该是有希望的。

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