Ong Beng S, Wu Yiliang, Li Yuning, Liu Ping, Pan Hualong
Institute of Materials Research & Engineering, Agency of Science, Technology and Research, 3 Research Link, Singapore 117602.
Chemistry. 2008;14(16):4766-78. doi: 10.1002/chem.200701717.
Printed organic thin-film transistors (OTFTs) have received great interests as potentially low-cost alternative to silicon technology for application in large-area, flexible, and ultra-low-cost electronics. One of the critical materials for TFTs is semiconductor, which has a dominant impact on the transistor properties. We review here the structural studies and design of thiophene-based polymer semiconductors with respect to solution processability, ambient stability, molecular self-organization, and field-effect transistor properties for OTFT applications. We show that through judicial monomer design, delicately controlled pi-conjugation, and strategically positioned pendant side-chain distribution, novel solution-processable thiophene polymer semiconductors with excellent self-organization ability to form extended lamellar pi-stacking orders can be developed. OTFTs using semiconductors of this nature processed in ambient conditions have provided excellent field-effect transistor properties.
印刷有机薄膜晶体管(OTFT)作为硅技术潜在的低成本替代品,在大面积、柔性和超低成本电子器件应用中受到了广泛关注。TFT的关键材料之一是半导体,它对晶体管性能有主要影响。在此,我们综述了基于噻吩的聚合物半导体在溶液可加工性、环境稳定性、分子自组装以及用于OTFT应用的场效应晶体管性能方面的结构研究与设计。我们表明,通过合理的单体设计、精细控制的π共轭以及策略性定位的侧链分布,可以开发出具有优异自组装能力以形成扩展层状π堆积有序结构的新型溶液可加工噻吩聚合物半导体。在环境条件下使用这种性质的半导体加工的OTFT具有优异的场效应晶体管性能。