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Inkjet-Printed Organic Field-Effect Transistor by Using Composite Semiconductor Material of Carbon Nanoparticles and Poly(3-Hexylthiophene)

机译:碳纳米粒子与聚(3-己基噻吩)复合半导体材料的喷墨印刷有机场效应晶体管

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摘要

Poly(3-hexylthiophene), P3HT, has been widely used in organic electronics as a semiconductor material. It suffers from the low carrier mobility characteristics. This limits P3HT to be employed in applications. Therefore, the blending semiconductor material, carbon nanoparticle (CNP), and P3HT, are developed and examined by inkjet-printing organic field-effect transistor technology in this work. The effective carrier mobility of fabricated OFETs can be enhanced by 8 folds with adding CNP and using O2 plasma treatment. At the same time, the transconductance of fabricated OFETs is also raised by 5 folds. Based on the observations of SEM, XRD, and FTIR, these improvements are contributed to the local field induced by the formation of CNP/P3HT complexes. This observation presents an insight of the development in organic semiconductor materials. Moreover, this work also offers a low-cost and effective semiconductor material for inkjet-printing technology in the development of organic electronics.
机译:聚(3-己基噻吩)P3HT已广泛用作有机电子产品中的半导体材料。它具有低的载流子迁移率特性。这限制了P3HT在应用中使用。因此,在这项工作中,通过喷墨印刷有机场效应晶体管技术开发并检查了混合半导体材料,碳纳米颗粒(CNP)和P3HT。通过添加CNP和使用O2等离子体处理,可以将制成的OFET的有效载流子迁移率提高8倍。同时,制成的OFET的跨导也提高了5倍。基于SEM,XRD和FTIR的观察结果,这些改进有助于CNP / P3HT复合物形成引起的局部电场。该观察结果提供了对有机半导体材料发展的见识。此外,这项工作还为有机电子学发展中的喷墨打印技术提供了一种低成本,有效的半导体材料。

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