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利用金属纳米线和石墨烯从柔性导电电极迈向可拉伸导电电极。

Moving beyond flexible to stretchable conductive electrodes using metal nanowires and graphenes.

作者信息

Lee Hanleem, Kim Ikjoon, Kim Meeree, Lee Hyoyoung

机构信息

Center for Integrated Nanostructure Physics, Institute for Basic Science (IBS), and Department of Energy Science, Sungkyunkwan University, Suwon 440-746, Korea.

Department of Chemistry, Sungkyunkwan University, Suwon 440-746, Korea.

出版信息

Nanoscale. 2016 Jan 28;8(4):1789-822. doi: 10.1039/c5nr06851g.

Abstract

Stretchable and/or flexible electrodes and their associated electronic devices have attracted great interest because of their possible applications in high-end technologies such as lightweight, large area, wearable, and biointegrated devices. In particular, metal nanowires and graphene derivatives are chosen for electrodes because they show low resistance and high mechanical stability. Here, we review stretchable and flexible soft electrodes by discussing in depth the intrinsic properties of metal NWs and graphenes that are driven by their dimensionality. We investigate these properties with respect to electronics, optics, and mechanics from a chemistry perspective and discuss currently unsolved issues, such as how to maintain high conductivity and simultaneous high mechanical stability. Possible applications of stretchable and/or flexible electrodes using these nanodimensional materials are summarized at the end of this review.

摘要

可拉伸和/或柔性电极及其相关电子设备因其在高端技术(如轻质、大面积、可穿戴和生物集成设备)中的潜在应用而备受关注。特别是,金属纳米线和石墨烯衍生物被选作电极材料,因为它们具有低电阻和高机械稳定性。在此,我们通过深入讨论金属纳米线和石墨烯因其维度所具有的内在特性,对可拉伸和柔性软电极进行综述。我们从化学角度研究这些材料在电子学、光学和力学方面的特性,并讨论当前尚未解决的问题,例如如何保持高导电性和同时具备高机械稳定性。本文最后总结了使用这些纳米材料的可拉伸和/或柔性电极的可能应用。

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