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Alkylated selenophene-based ladder-type monomers via a facile route for high performance thin-film transistor applications

机译:烷基酚硒基梯型单体通过简便的途径用于高性能薄膜晶体管应用

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摘要

We report the synthesis of two new selenophene containing ladder-type monomers, cyclopentadiselenophene (CDS) and indacenodiselenophene (IDSe), via a twofold and fourfold Pd catalyzed coupling with a 1,1-diborylmethane derivative. Co-polymers with benzothiadiazole (BT) were prepared in high yield by Suzuki polymerization to afford co-polymers which exhibited excellent solubility in a range of non-chlorinated solvents. The CDS co-polymer exhibited a band gap of just 1.18 eV, which is amongst the lowest reported for donor-acceptor polymers. Thin-film transistors were fabricated using environmentally benign, non-chlorinated solvents with the CDS and IDSe co-polymers exhibiting hole mobility up to 0.15 and 6.4 cm2 /Vs, respectively. This high performance was achieved without the undesirable peak in mobility often observed at low gate voltages due to parasitic contact resistance.
机译:我们报告了两个新的含硒的梯形单体,环戊二烯(CDS)和茚并二烯(IDSe)的合成,通过与1,1-二硼烷基甲烷衍生物的两倍和四倍的钯催化。通过铃木聚合反应以高收率制备了具有苯并噻二唑(BT)的共聚物,从而提供了在一系列非氯化溶剂中显示出极好的溶解性的共聚物。 CDS共聚物的带隙仅为1.18 eV,是供体-受体聚合物报道的最低值。薄膜晶体管是使用对环境无害的非氯化溶剂制造的,CDS和IDSe共聚物的空穴迁移率分别高达0.15和6.4 cm2 / Vs。实现了这种高性能,而没有由于寄生接触电阻而在低栅极电压下经常观察到的不希望的迁移率峰值。

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