Graduate School of Engineering, Nagoya Institute of Technology, Gokiso-cho, Showa-ku, Nagoya, 466-8555, Japan.
Graduate School of Engineering, Nagoya University, Furo-cho, Chikusa-ku, Nagoya, 464-8603, Japan.
Chemistry. 2018 Sep 20;24(53):14137-14145. doi: 10.1002/chem.201801399. Epub 2018 Aug 23.
Five π-extended lactam-fused conjugated oligomers (5FO, 5FS, 4FPO, 4FPS, and R-4FPO) were synthesized by the tandem direct arylation. The intermolecular oxidative direct arylation was applied in the second step. These conjugated oligomers had fine-tuned FMO energies predictable by the theoretical calculation and excellent thermal stabilities. 4FPO and 4FPS bearing tetrafluoropyridine exhibited lower LUMO energy levels (-3.20 eV and -3.39 eV, respectively) compared with others. Based on the X-ray crystallography, 4FPO was found to have a herringbone crystal packing and a considerably large electron transfer integral value (137 meV). 4FPO-based bottom-gate, bottom-contact FET device demonstrated an electron mobility of 5.2×10 cm V s as a result of an edge-on alignment on the SiO substrate.
五种 π-扩展内酰胺稠合共轭寡聚物(5FO、5FS、4FPO、4FPS 和 R-4FPO)通过串联直接芳基化合成。第二步采用了分子间氧化直接芳基化。这些共轭寡聚物具有可通过理论计算预测的精细调整的 FMO 能量和优异的热稳定性。带有四氟吡啶的 4FPO 和 4FPS 的 LUMO 能级(分别为-3.20 eV 和-3.39 eV)比其他的低。基于 X 射线晶体学,发现 4FPO 具有鱼骨状晶体堆积和相当大的电子转移积分值(137 meV)。4FPO 为基础的底栅、底接触 FET 器件在 SiO 衬底上表现出边缘对准的电子迁移率为 5.2×10 cm V s ,这是由于边缘对准。