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Influence of alkyl side-chain type and length on the thin film microstructure and OFET performance of naphthalene diimide-based organic semiconductors

机译:烷基侧链类型和长度对萘二酰亚胺基有机半导体薄膜微观结构和OFET性能的影响

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摘要

Here we study the effect of side chain length and type on the microstructure and organic field-effect transistor (OFET) performance of solution-processed naphthalene diimide (NDI) thin films. Linear side chains with four (C4), five (C5), six (C6), eight (C8) and twelve (C12) carbon atoms are studied along with a branched ethylhexyl (EH) side chain. Interestingly, mobilities of up to ~0.2cm~2/Vs are achieved for short (C4) and long (C12) side chains with linear chains of intermediate length and the branched side chain producing lower mobilities. The observed mobility trends are explained in terms of the competing influence of changes in crystal packing and changes in thin film morphology with changes in side chain length. Shorter side chains produce changes in the lateral stacking of NDI units which promote higher mobility while longer side chains produce solution-processed thin films with higher film quality evidenced by larger domain sizes and lower orientational disorder. Side chain length is also found to strongly modulate the molecular orientation of the NDI core, with high edge-on orientations observed for long chains, and tilted orientations for short chains. Thin film microstructure is investigated using a range of techniques including atomic force microscopy, grazing incidence wide-angle X-ray scattering and near-edge X-ray absorption fine-structure spectroscopy.
机译:在这里,我们研究了侧链长度和类型对固溶萘二酰亚胺(NDI)薄膜的微结构和有机场效应晶体管(OFET)性能的影响。研究了具有四个(C4),五个(C5),六个(C6),八个(C8)和十二个(C12)碳原子的线性侧链以及支链乙基己基(EH)侧链。有趣的是,短(C4)和长(C12)侧链具有中等长度的线性链,而支链侧链产生较低的迁移率,迁移率可达〜0.2cm〜2 / Vs。观察到的迁移率趋势是根据晶体堆积变化和薄膜形态变化与侧链长度变化的竞争影响来解释的。较短的侧链会在NDI单元的横向堆叠中产生变化,从而促进更高的迁移率,而较长的侧链会产生固溶处理的薄膜,具有更高的膜质量,这由较大的畴尺寸和较低的取向紊乱证明。还发现侧链长度强烈调节了NDI核的分子取向,长链观察到了高边沿取向,短链观察到了倾斜取向。使用原子力显微镜,掠射入射广角X射线散射和近边缘X射线吸收精细结构光谱学等一系列技术研究了薄膜的微观结构。

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