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Solution-processable small molecules for bulk heterojunction ambipolar thin-film transistors and complementary-like inverters

机译:溶液可加工的小分子用于散装异质结同芯片薄膜晶体管和互补的逆变器

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Solution-processable thioalkylated bithiophene derivatives with different lengths of side chains (SBT-n; n = 10, 12, 14, 16, 18) have been synthesized and characterized as p-channel organic semiconductors for thin-film transistors (TFTs). Based on a combination of the highest performing SBT derivative (SBT-14) and quinoidals (DTTRQs) as p-and n-channel materials, solution-processed small-molecular bulk heterojunction (BHJ) ambipolar thin-film transistors were fabricated, and the resulting devices showed air-stable and high ambipolar performance with well-balanced electron and hole mobilities as high as 0.70 cm(2) V-1 s(-1) and 0.21 cm(2) V-1 s(-1), respectively. Furthermore, complementary-like inverters comprising two ambipolar thin-film transistors were demonstrated, which exhibited a high voltage gain of up to 81. Our study clearly demonstrated that side chain engineering of small molecular organic semiconductors had a significant influence on the electrical performance of TFTs and BHJ transistors, as well as complementary-like inverters.
机译:已经合成了具有不同长度的侧链(SBT-N; N = 10,12,16,16,18)的溶液加工的硫代烷基化的二硫代蛋白衍生物,并表征为薄膜晶体管(TFT)的P沟道有机半导体。基于最高执行SBT衍生物(SBT-14)和Quinidals(DTTRQ)的组合,作为P-and N沟道材料,制造了溶液加工的小分子体杂交函数(BHJ)Ambipolar薄膜晶体管,并且所产生的装置显示出空气稳定和高的非芯片性能,具有良好平衡的电子和空穴次数,分别高达0.70cm(2)V-1 s(-1)和0.21cm(2)V-1 s(-1) 。此外,证明了包括两个Ambipolar薄膜晶体管的互补的逆变器,其高压增益高达81.我们的研究清楚地表明,小分子有机半导体的侧链工程对TFT的电气性能有显着影响和BHJ晶体管,以及互补的逆变器。

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