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Effects of Side-Chain Interdigitation on Stability: An Environmentally, Electrically, and Thermally Stable Semiconducting Polymer

机译:侧链交叉指对稳定性的影响:一种环境,电气和热稳定的半导体聚合物

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摘要

A polymeric semiconductor, poly(3,6-dihexyl-[2,2']bi-[thieno[3,2-b]thiophene]) (PDHTT), was synthesized and tested as an active layer in organic thin film transistors (OTFTs). This semiconductor showed considerable potential for use in commercial electronic devices because of its superior characteristics, particularly its good stability. PDHTT-based OTFTs exhibited high stability in air, retaining their initial performance after exposure to 70% relative humidity for 50 days; they were also stable under repeated electrical stress and even after exposure to temperatures as high as 250 °C. We attribute the remarkable stability of PDHTT OTFTs to the relatively low highest occupied molecular orbital (5.1 eV) level of the polymer and its highly interdigitated structure in the thin film state.
机译:合成了一种聚合物半导体,聚(3,6-二己基-[2,2']双-[噻吩并[3,2-b]噻吩])(PDHTT),并作为有机薄膜晶体管中的有源层进行了测试( OTFT)。这种半导体由于其优越的特性,特别是其良好的稳定性,在商业电子设备中显示出巨大的潜力。基于PDHTT的OTFT在空气中表现出高稳定性,在暴露于70%相对湿度下50天后仍保持其初始性能。它们在反复的电应力下甚至在暴露于高达250°C的温度下也很稳定。我们将PDHTT OTFT的出色稳定性归因于聚合物的相对较低的最高占据分子轨道(5.1 eV)水平及其在薄膜状态下的高度叉指结构。

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