Di Chong-an, Yu Gui, Liu Yunqi, Zhu Daoben
Beijing National Laboratory for Molecular Sciences, and Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences. Beijing 100080, P. R. China.
J Phys Chem B. 2007 Dec 27;111(51):14083-96. doi: 10.1021/jp071753b. Epub 2007 Dec 5.
In the past decade, tremendous progress has been made in organic field-effect transistors (OFETs). Their real applications require further development of device performance. OFETs consist of organic semiconductors, dielectric layers, and electrodes. Organic semiconductors play a key role in determining the device characteristics. The properties of the organic semiconductors, such as molecular structure and packing, as well as molecular energy levels, can be properly controlled by molecular design. Therefore, we designed and synthesized a series of organic molecules. The synthesized organic semiconductors exhibit excellent field-effect properties due to strong intermolecular interactions and proper molecular energy levels. Meanwhile, the influence of the device fabrication process, organic semiconductor/dielectric layer interface, and organic layer/electrode contact on the device performance was investigated. A deep understanding of these factors is helpful to improve field-effect properties. Furthermore, single-crystal field-effect transistors are highlighted because the single-crystal-based FETs can provide an accurate conducting mechanism of organic semiconductors and higher device performance as compared with thin film FETs.
在过去十年中,有机场效应晶体管(OFETs)取得了巨大进展。它们的实际应用需要进一步提高器件性能。OFETs由有机半导体、介电层和电极组成。有机半导体在决定器件特性方面起着关键作用。通过分子设计可以适当控制有机半导体的性质,如分子结构、堆积方式以及分子能级。因此,我们设计并合成了一系列有机分子。由于强分子间相互作用和适当的分子能级所合成的有机半导体表现出优异的场效应性能。同时,研究了器件制造工艺、有机半导体/介电层界面以及有机层/电极接触对器件性能的影响。深入了解这些因素有助于改善场效应性能。此外,单晶场效应晶体管受到关注,因为与薄膜场效应晶体管相比,基于单晶的场效应晶体管可以提供有机半导体精确的导电机制以及更高的器件性能。