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Carbon nanotubes-semiconductor networks for organic electronics: The pickup stick transistor

机译:用于有机电子产品的碳纳米管-半导体网络:皮卡晶体管

摘要

We demonstrate an alternative path for achieving high transconductance organic transistors in spite of relatively large source to drain distances. The improvement of the electronic characteristic of such a scheme is equivalent to a 60-fold increase in mobility of the underlying organic semiconductor. The method is based on percolating networks, which we create from a dispersion of individual single-wall carbon nanotubes and narrow ropes within an organic semiconducting host. The majority of current paths between source and drain follow the metallic nanotubes but require a short, switchable semiconducting link to complete the circuit. With these nanotube-semiconducting composites we achieve effectively a 60X reduction in source to drain distance, which is equivalent to a 60-fold increase of the '' effective '' mobility of the starting semiconducting material with a minor decrease of the on/off current ratio. These field-induced percolating networks allow for the fabrication of high-transconductance transistors having relatively large source to drain distances that can be manufactured inexpensively by commercially available printing techniques. (c) 2005 American Institute of Physics
机译:尽管源到漏的距离相对较大,但我们演示了一种实现高跨导有机晶体管的替代方法。这种方案的电子特性的改善等同于下层有机半导体的迁移率增加了60倍。该方法基于渗滤网络,我们是通过将单个单壁碳纳米管和窄绳分散在有机半导体主体中而创建的。源极和漏极之间的大多数电流路径遵循金属纳米管,但需要短而可切换的半导体链路来完成电路。使用这些纳米管半导体复合材料,我们可以有效地将源极到漏极距离减少60倍,这相当于将起始半导体材料的“有效”迁移率提高了60倍,而开/关电流却略有下降比。这些场诱导的渗滤网络允许制造具有相对较大的源极至漏极距离的高导通晶体管,其可以通过商业上可获得的印刷技术廉价地制造。 (c)2005年美国物理研究所

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