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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Highly pi-extended small molecules with bis(alkylthio)methylene side chains for organic field-effect transistors
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Highly pi-extended small molecules with bis(alkylthio)methylene side chains for organic field-effect transistors

机译:具有双(烷基硫基)亚甲基侧链的高度PI-扩展的小分子用于有机场效应晶体管

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摘要

Organic field-effect transistor (OFET) performance is strongly dependent on not only the conjugated core structure but also the organic semiconductor side chains. This paper reports on indacenodithiophene (IDT) based conjugated small molecules with rarely investigated side chains of bis(alkylthio)methylene as dimethyloctyl (SMOIC) and ethylhexyl (SEHIC) structures for OFET active layers. Basic properties of materials, such as band gap, HOMO and LUMO energy levels, and film crystallinity were similar regardless of the alkylthio side chain structure. SMOIC and SEHIC both exhibited reliable ambipolar charge transport with reasonably high hole (0.052 and 0.148 cm(2) V-1 s(-1)) and electron mobilities (0.020 and 0.023 cm(2) V-1 s(-1)). Higher hole mobilities were observed in OFETs based on SEHIC with the bis(ethylhexylthio)methylene side chain due to better thin film crystallinity and larger molecular planarity.
机译:有机场效应晶体管(OFET)性能强烈依赖于共轭芯结构,而且是有机半导体侧链。 本文报道了基于茚环丁基噻吩(IDT)的共轭小分子,其具有很少研究的双(烷基硫基)亚甲基的侧链,例如FONET活性层的二甲基(SmoIs)和乙基己基(SEHIC)结构。 无论烷硫基侧链结构,相似的材料的基本性质,如带隙,均匀和LumO能量水平,以及薄膜结晶度。 Smoic和SEHIC都表现出可靠的Amipolar电荷运输,具有合理的高孔(0.052和0.148cm(2)V-1 S(-1))和电子迁移率(0.020和0.023cm(2)V-1 s(-1)) 。 由于较好的薄膜结晶度和较大的分子平面,基于SEHIC,在基于双(乙基己酮)亚甲基侧链的SEHIC,观察到更高的孔迁移率。

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