McCulloch Iain, Bailey Clare, Genevicius Kristijonas, Heeney Martin, Shkunov Maxim, Sparrowe David, Tierney Steven, Zhang Weimin, Baldwin Rodney, Kreouzis Theo, Andreasen Jens W, Breiby Dag W, Nielsen Martin M
Merck Chemicals, Chilworth Science Park, Southampton SO16 7QD, UK.
Philos Trans A Math Phys Eng Sci. 2006 Oct 15;364(1847):2779-87. doi: 10.1098/rsta.2006.1854.
Organic electronics technology, in which at least the semiconducting component of the integrated circuit is an organic material, offers the potential for fabrication of electronic products by low-cost printing technologies, such as ink jet, gravure offset lithography and flexography. The products will typically be of lower performance than those using the present state of the art single crystal or polysilicon transistors, but comparable to amorphous silicon. A range of prototypes are under development, including rollable electrophoretic displays, active matrix liquid crystal (LC) displays, flexible organic light emitting diode displays, low frequency radio frequency identification tag and other low performance electronics. Organic semiconductors that offer both electrical performance and stability with respect to storage and operation under ambient conditions are required. This work describes the development of reactive mesogen semiconductors, which form large crosslinked LC domains on polymerization within mesophases. These crosslinked domains offer mechanical stability and are inert to solvent exposure in further processing steps. Reactive mesogens containing conjugated aromatic cores, designed to facilitate charge transport and provide good oxidative stability, were prepared and their liquid crystalline properties evaluated. The organization and alignment of the mesogens, both before and after crosslinking, were probed by grazing incidence wide-angle X-ray scattering of thin films. Both time-of-flight and field effect transistor devices were prepared and their electrical characterization reported.
有机电子技术中,集成电路的至少半导体组件为有机材料,这为通过低成本印刷技术(如喷墨、凹版胶印光刻和柔性版印刷)制造电子产品提供了潜力。这些产品的性能通常会低于使用当前先进的单晶或多晶硅晶体管的产品,但与非晶硅相当。一系列原型正在开发中,包括可卷曲电泳显示器、有源矩阵液晶(LC)显示器、柔性有机发光二极管显示器、低频射频识别标签及其他低性能电子产品。需要在环境条件下存储和操作时兼具电性能和稳定性的有机半导体。这项工作描述了反应性液晶基元半导体的开发,其在中间相内聚合时形成大的交联液晶域。这些交联域提供机械稳定性,并在进一步加工步骤中对溶剂暴露呈惰性。制备了含有共轭芳核的反应性液晶基元,旨在促进电荷传输并提供良好的氧化稳定性,并评估了它们的液晶性能。通过薄膜的掠入射广角X射线散射探测了交联前后液晶基元的排列和取向。制备了飞行时间和场效应晶体管器件,并报告了它们的电学特性。