Velusamy Arulmozhi, Chen Yen-Yu, Lin Meng-Hao, Afraj Shakil N, Liu Jia-Hao, Chen Ming-Chou, Liu Cheng-Liang
Department of Chemistry and Research Center of New Generation Light Driven Photovoltaic Modules, National Central University, Taoyuan, 32001, Taiwan.
Department of Materials Science and Engineering, National Taiwan University, Taipei, 10617, Taiwan.
Adv Sci (Weinh). 2024 Mar;11(9):e2305361. doi: 10.1002/advs.202305361. Epub 2023 Dec 14.
This work presents a series of novel quinoidal organic semiconductors based on diselenophene-dithioalkylthiophene (DSpDST) conjugated cores with various side-chain lengths (-thiohexyl, -thiodecyl, and -thiotetradecyl, designated DSpDSTQ-6, DSpDSTQ-10, and DSpDSTQ-14, respectively). The purpose of this research is to develop solution-processable organic semiconductors using dicyanomethylene end-capped organic small molecules for organic field effect transistors (OFETs) application. The physical, electrochemical, and electrical properties of these new DSpDSTQs are systematically studied, along with their performance in OFETs and thin film morphologies. Additionally, the molecular structures of DSpDSTQ are determined through density functional theory (DFT) calculations and single-crystal X-ray diffraction analysis. The results reveal the presence of intramolecular S (alkyl)···Se (selenophene) interactions, which result in a planar SR-containing DSpDSTQ core, thereby promoting extended π-orbital interactions and efficient charge transport in the OFETs. Moreover, the influence of thioalkyl side chain length on surface morphologies and microstructures is investigated. Remarkably, the compound with the shortest thioalkyl chain, DSpDSTQ-6, demonstrates ambipolar carrier transport with the highest electron and hole mobilities of 0.334 and 0.463 cm V s , respectively. These findings highlight the excellence of ambipolar characteristics of solution-processable OFETs based on DSpDSTQs even under ambient conditions.
这项工作展示了一系列基于二硒吩-二硫代烷基噻吩(DSpDST)共轭核且具有不同侧链长度(-硫代己基、-硫代癸基和-硫代十四烷基,分别命名为DSpDSTQ-6、DSpDSTQ-10和DSpDSTQ-14)的新型醌型有机半导体。本研究的目的是开发使用二氰基亚甲基封端的有机小分子用于有机场效应晶体管(OFET)应用的可溶液加工的有机半导体。系统地研究了这些新型DSpDSTQ的物理、电化学和电学性质,以及它们在OFET中的性能和薄膜形态。此外,通过密度泛函理论(DFT)计算和单晶X射线衍射分析确定了DSpDSTQ的分子结构。结果表明存在分子内S(烷基)···Se(硒吩)相互作用,这导致形成含SR的平面DSpDSTQ核,从而促进了扩展的π轨道相互作用和OFET中的有效电荷传输。此外,研究了硫代烷基侧链长度对表面形态和微观结构的影响。值得注意的是,具有最短硫代烷基链的化合物DSpDSTQ-6表现出双极性载流子传输,其电子和空穴迁移率分别高达0.334和0.463 cm² V⁻¹ s⁻¹。这些发现突出了基于DSpDSTQ的可溶液加工OFET即使在环境条件下也具有出色的双极性特性。