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Synthesis of the extended phenacene molecules 10phenacene and 11phenacene and their performance in a field-effect transistor

机译:扩展的并苯分子10和11并苯的合成及其在场效应晶体管中的性能

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摘要

The [10]phenacene and [11]phenacene molecules have been synthesized using a simple repetition of Wittig reactions followed by photocyclization. Sufficient amounts of [10]phenacene and [11]phenacene were obtained, and thin-film FETs using these molecules have been fabricated with SiO2 and ionic liquid gate dielectrics. These FETs operated in p-channel. The averaged measurements of field-effect mobility, <μ>, were 3.1(7) × 10−2 and 1.11(4) × 10−1 cm2 V−1 s−1, respectively, for [10]phenacene and [11]phenacene thin-film FETs with SiO2 gate dielectrics. Furthermore, [10]phenacene and [11]phenacene thin-film electric-double-layer (EDL) FETs with ionic liquid showed low-voltage p-channel FET properties, with <μ> values of 3(1) and 1(1) cm2 V−1 s−1, respectively. This study also discusses the future utility of the extremely extended π-network molecules [10]phenacene and [11]phenacene as the active layer of FET devices, based on the experimental results obtained.
机译:[10]并苯和[11]并苯分子是通过简单重复Wittig反应然后进行光环化反应合成的。获得了足够量的[10]并苯和[11]并苯,并使用SiO2和离子液体栅极电介质制造了使用这些分子的薄膜FET。这些FET在p通道中运行。场效应迁移率<μ>的平均测量值为3.1(7)×10 -2 和1.11(4)×10 -1 cm 2 V -1 s -1 分别用于具有SiO2栅极电介质的[10]并菲和[11]并菲薄膜FET。此外,具有离子液体的[10]并菲和[11]并菲薄膜双电层FET表现出低压p沟道FET特性,<μ>值为3(1)和1(1 )cm 2 V -1 s -1 。这项研究还基于获得的实验结果,讨论了扩展非常大的π网络分子[10]并[11]并并用作FET器件有源层的实用性。

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