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可拉伸、大面积有机电子学。

Stretchable, large-area organic electronics.

机构信息

Department of Electrical and Electronic Engineering and Information Systems, The University of Tokyo, Bunkyo-ku, Japan.

出版信息

Adv Mater. 2010 May 25;22(20):2228-46. doi: 10.1002/adma.200904054.

Abstract

Stretchability will significantly expand the application scope of electronics, particularly large-area electronics-displays, sensors, and actuators. If arbitrary surfaces and movable parts could be covered with stretchable electronics, which is impossible with conventional electronics, new classes of applications are expected to emerge. A large hurdle is manufacturing electrical wiring with high conductivity, high stretchability, and large-area compatibility. This Review describes stretchable, large-area electronics based on organic field-effect transistors for applications to sensors and displays. First, novel net-shaped organic transistors are employed to realize stretchable, large-area sensor networks that detect distributions of pressure and temperature simultaneously. The whole system is functional even when it is stretched by 25%. In order to further improve stretchability, printable elastic conductors are developed by dispersing single-walled carbon nanotubes (SWNTs) as dopants uniformly in rubbers. Further, we describe integration of printable elastic conductors with organic transistors to construct a rubber-like stretchable active matrix for large-area sensor and display applications. Finally, we will discuss the future prospects of stretchable, large-area electronics with delineating a picture of the next-generation human/machine interfaces from the aspect of materials science and electronic engineering.

摘要

可拉伸性将极大地扩展电子产品的应用范围,特别是大面积的电子显示器、传感器和致动器。如果可以将可拉伸电子产品覆盖在任意表面和活动部件上,而这是传统电子产品无法做到的,那么预计将会出现新的应用类别。一个主要的障碍是制造具有高导电性、高可拉伸性和大面积兼容性的电线。这篇综述描述了基于有机场效应晶体管的可拉伸、大面积电子产品,用于传感器和显示器应用。首先,采用新型网状有机晶体管实现了可拉伸、大面积传感器网络,该网络可以同时检测压力和温度的分布。即使在 25%的拉伸下,整个系统也能正常工作。为了进一步提高可拉伸性,通过将单壁碳纳米管(SWNTs)作为掺杂剂均匀分散在橡胶中,开发了可打印弹性导体。此外,我们描述了将可打印弹性导体与有机晶体管集成,构建用于大面积传感器和显示器应用的橡胶状可拉伸有源矩阵。最后,我们将从材料科学和电子工程的角度讨论可拉伸、大面积电子产品的未来前景,勾勒出下一代人机界面的蓝图。

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