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2,2′-Bis(trifluoromethyl)biphenyl as a building block for highly ambient-stable, amorphous organic field-effect transistors with balanced ambipolarity

机译:2,2'-双(三氟甲基)联苯作为高度环境稳定,非晶有机场效应晶体管具有平衡的余地的构建块

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Novel conjugated polymers, PBPV–TPA, PBPV–CBZ, PBPV–MEH and PBPV–FLO, consisting of trifluoromethyl-substituted biphenyl (2,2′-bis(trifluoromethyl)biphenyl, CF _(3) -BP) as the acceptor with various aromatic donors (triphenylamine TPA, carbazole CBZ, 2-(2-ethylhexyloxy)-5-methoxybenzene MEH and fluorene FLO, respectively) have been successfully synthesized. Their amorphous features, confirmed by wide-angle X-ray scattering, small-angle X-ray scattering and atomic force microscopy, are attributed to lateral side chains on the CBZ, MEH and FLO units, and the propeller geometry of the TPA unit. By integration of CF _(3) -BPs into the polymer backbone, the ambipolarities and well-balanced charge mobilities of OFETs based on these polymers were successfully demonstrated. OFETs based on PBPV–FLO exhibit the highest hole mobility of 0.0152 cm ~(2) V ~(?1) s ~(?1) and electron mobility of 0.0120 cm ~(2) V ~(?1) s ~(?1) . In addition, these OFETs also exhibit annealing-free characteristics and ambient stability. The OFET performance without encapsulation remained nearly unchanged in ambient conditions for up to 90 days. This could be attributed to the enhanced oxidative stability from their relatively deep HOMO energy levels and better moisture resistance from the trifluoromethyl substitution. Considering the ambipolar, annealing-free and ambient-stable properties of these CF _(3) -BP-based amorphous conjugated polymers, the electron-accepting CF _(3) -BP unit can be considered as a promising building block in preparing the easily processable conjugated polymers used in high-stability optoelectronic applications.
机译:新的共轭聚合物,PBPV-TPA,PBPV-CBZ,PBPV-MEH和PBPV-FLO,由三氟甲基取代的联苯(2,2'-双(三氟甲基)联烯基,CF _(3)-BP)组成,作为受体成功地合成了各种芳香剂(三苯胺TPA,咔唑CBZ,2-(2-乙基己氧基)-5-甲氧基苯MEH和芴FLO。通过广角X射线散射,小角度X射线散射和原子力显微镜确认的它们的无定形特征归因于CBZ,MEH和FLO单元上的横向侧链,以及TPA单元的螺旋桨几何形状。通过将CF _(3)-bps集成到聚合物骨架中,成功地证明了基于这些聚合物的OFETS的植物结构和均衡的电荷迁移率。基于PBPV-FLO的OFETS表现出最高孔迁移率为0.0152cm〜(2)V〜(α1)和电子迁移率为0.0120cm〜(2)V〜(?1)s〜(? 1)。此外,这些OFES还表现出退火的特性和环境稳定性。没有封装的性能在环境条件下几乎保持不变,长达90天。这可能归因于来自其相对深的同性能水平和从三氟甲基取代的更好的防潮性的增强的氧化稳定性。考虑到这些CF _(3)-BP的无定形共轭聚合物的非芯片,无退火和环境稳定的性质,电子接受CF _(3)-BP单元可以被认为是准备的有前途的建筑块在高稳定性光电应用中使用的易于加工的共轭聚合物。

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