†Department of Chemistry and Centre for Plastic Electronics, Imperial College London, Exhibition Rd, London SW7 2AZ, U.K.
‡Department of Physics and Centre for Plastic Electronics, Imperial College London, Exhibition Rd, London SW7 2AZ, U.K.
J Am Chem Soc. 2015 Jun 3;137(21):6866-79. doi: 10.1021/jacs.5b02785. Epub 2015 May 21.
We report two strategies toward the synthesis of 3-alkyl-4-fluorothiophenes containing straight (hexyl and octyl) and branched (2-ethylhexyl) alkyl groups. We demonstrate that treatment of the dibrominated monomer with 1 equiv of alkyl Grignard reagent leads to the formation of a single regioisomer as a result of the pronounced directing effect of the fluorine group. Polymerization of the resulting species affords highly regioregular poly(3-alkyl-4-fluoro)thiophenes. Comparison of their properties to those of the analogous non-fluorinated polymers shows that backbone fluorination leads to an increase in the polymer ionization potential without a significant change in optical band gap. Fluorination also results in an enhanced tendency to aggregate in solution, which is ascribed to a more co-planar backbone on the basis of Raman and DFT calculations. Average charge carrier mobilities in field-effect transistors are found to increase by up to a factor of 5 for the fluorinated polymers.
我们报告了两种合成含直链(己基和辛基)和支链(2-乙基己基)烷基的 3-烷基-4-氟噻吩的策略。我们证明,用 1 当量的烷基格氏试剂处理二溴化单体,由于氟基团的显著导向作用,形成单一的区域异构体。所得单体的聚合得到高区域规整的聚(3-烷基-4-氟)噻吩。将它们的性质与类似的非氟化聚合物进行比较表明,主链氟化会导致聚合物电离势增加,而光学带隙没有明显变化。氟化还导致在溶液中更倾向于聚集,这归因于根据拉曼和 DFT 计算得到的更共面的主链。在场效应晶体管中,发现氟代聚合物的平均电荷载流子迁移率最高可增加 5 倍。