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Nano-scale fabrication and nano-scale interface control for molecular/organic devices

机译:分子/有机器件的纳米级制造和纳米级界面控制

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Plastic electronics has shown remarkable progress to realize future flexible-image devices. However, there are huge amount of issues to be solved as "nanoscale interface issues" in the plastic electronics, especially in transistor. The nanoscale interface issues are actually serious problems for the transistor operation delay and a future device miniaturization. For example, the interface resistance between the plastic channel and the metal contact dominates the transistor resistance in a short channel transistor, which cannot allow us to control the desirable current switching operation. To investigate these issues, we proposed and established a laser etching method to form a four-terminal device and directly showed gate-dependent contact resistance. Furthermore, an interface between the organic channel and substrate also affects the transistor performance. Controlling these nanoscale interfaces, we integrated a pixel of the organic transistor with the organic light emitting diode, and investigated detail of the operation properties for the future flexible display device.
机译:塑料电子产品在实现未来的柔性图像设备方面已经取得了显着进步。但是,在塑料电子产品中,尤其是在晶体管中,有许多问题需要解决,例如“纳米级接口问题”。纳米级界面问题实际上是晶体管工作延迟和未来器件小型化的严重问题。例如,塑料通道和金属触点之间的界面电阻支配着短通道晶体管中的晶体管电阻,这不能让我们控制所需的电流开关操作。为了研究这些问题,我们提出并建立了一种激光蚀刻方法来形成四端子器件,并直接显示出与栅极相关的接触电阻。此外,有机通道和衬底之间的界面也影响晶体管的性能。通过控制这些纳米级界面,我们将有机晶体管的像素与有机发光二极管集成在一起,并研究了未来柔性显示设备的操作特性的细节。

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