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Stretchable organic integrated circuits for large-area electronic skin surfaces

机译:用于大面积电子皮肤表面的可拉伸有机集成电路

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摘要

Recent advances in stretchable electronics have seen the emergence of new technologies, and intensive efforts are being dedicated to embed some form of "intelligence" in various types of surfaces. However, the primary challenge in the field of stretchable electronics has been the development of stretchable or elastic electrical wiring that is both highly conductive and highly stretchable. Another challenge has been the development of manufacturing processes for integrating active device components as non-stretchable regions with electrical wiring as stretchable regions; the rigid/stretchable interfaces of these components require both high conductivity and high mechanical stability. In this article, we review the fabrication of carbon-nanotube-based elastic conductors with high electrical conductivity and mechanical stretchability as a representative example of stretchable organic integrated circuit electronics. Furthermore, we demonstrate the development of rubber-like stretchable integrated circuits for large-area human/machine interfaces. The fabrication process described in this article exploits the advantages of integrating a variety of electrical functional materials, ranging from rigid and semi-rigid elastomers to gels, with electronic circuits. The stretchable devices can be spread over a wide range of surfaces, including free surface curvatures and movable parts, thereby significantly increasing the scope of application of stretchable electrical and electronic circuits.
机译:可伸缩电子学的最新进展已经看到了新技术的出现,并且人们致力于将各种形式的“智能”嵌入各种类型的表面。然而,可拉伸电子学领域的主要挑战是开发具有高导电性和高可拉伸性的可拉伸或弹性电线。另一个挑战是开发制造工艺,以将作为不可拉伸区域的有源器件组件与作为可拉伸区域的电线集成在一起。这些组件的刚性/可拉伸界面需要高导电性和高机械稳定性。在本文中,我们回顾了具有高电导率和机械可拉伸性的碳纳米管基弹性导体的制造,以此作为可拉伸有机集成电路电子器件的代表性示例。此外,我们演示了用于大面积人机界面的类似橡胶的可拉伸集成电路的开发。本文所述的制造工艺利用了将各种电子功能材料与电子电路相集成的优势,这些材料包括从刚性和半刚性的弹性体到凝胶。可拉伸装置可分布在包括自由表面曲率和可移动部件的广泛表面上,从而显着增加了可拉伸电路和电子电路的应用范围。

著录项

  • 来源
    《MRS bulletin 》 |2012年第3期| p.236-245| 共10页
  • 作者单位

    Department of Electrical and Electronic Engineering, University of Tokyo;

    Department ot Electrical and Electronic Engineering, University of Tokyo;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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