Department of Materials Science, State Key Laboratory of Molecular Engineering of Polymers, Fudan University, Shanghai, 200438, P. R. China.
Adv Mater. 2023 May;35(20):e2300094. doi: 10.1002/adma.202300094. Epub 2023 Mar 26.
Designing (hetero)cycloarenes through the modifications of the π-topology and molecular packing of organic semiconductors has recently garnered considerable attention. However, their applications as an organic active layer in field-effect transistors are very limited, and the obtained hole carrier mobilities are less than 1 cm V s . In this work, a novel alkyl-substituted coplanar N-heterocycloarene (FM-C4) containing four carbazole units is successfully synthesized in crystalline form. As compared to the corresponding single-bond-linked carbazole-based macrocycle M-C4, it is found that the periphery fusion strategy greatly changes the electronic structures, energy levels, photophysical properties, host-guest interactions with fullerenes, and molecular crystal stacking motifs. In particular, the fully fused N-heterocycloarene FM-C4 exhibits a herringbone packing structure with an unusual long-range π-π overlap distance as low as 3.19 Å, whereas the single crystal of M-C4 demonstrates no π-π interactions. As a consequence, FM-C4 in single-crystal transistors displays the highest hole mobility of 2.06 cm V s , significantly outperforming M-C4 and all the reported (hetero)cycloarenes and suggesting the high potential of (hetero)cycloarenes for organic electronic applications.
通过对有机半导体的π-拓扑和分子堆积的修饰来设计(杂)环芳烃,最近引起了相当大的关注。然而,它们作为场效应晶体管中的有机活性层的应用非常有限,并且获得的空穴载流子迁移率小于 1 cm V s 。在这项工作中,成功地以结晶形式合成了一种新型的含四个咔唑单元的烷基取代的共面 N-杂环芳烃(FM-C4)。与相应的单键连接的咔唑基大环 M-C4 相比,发现外围融合策略极大地改变了电子结构、能级、光物理性质、与富勒烯的主体-客体相互作用以及分子晶体堆积模式。特别是,完全融合的 N-杂环芳烃 FM-C4 呈现出鱼骨状堆积结构,其不寻常的长程π-π重叠距离低至 3.19 Å,而 M-C4 的单晶则没有π-π相互作用。因此,FM-C4 在单晶晶体管中表现出最高的空穴迁移率为 2.06 cm V s ,明显优于 M-C4 和所有报道的(杂)环芳烃,表明(杂)环芳烃在有机电子应用方面具有很高的潜力。