Studies on the mechanical stretchability of transparent conductive film based on graphene-metal nanowire structures.

Studies on the mechanical stretchability of transparent conductive film based on graphene-metal nanowire structures.
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DOI:
10.1186/s11671-015-0748-z
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发表时间:
2015
影响因子:
--
通讯作者:
Park JU
Park JU
中科院分区:
材料科学3区
文献类型:
--
作者:
Lee MS;Kim J;Park J;Park JU

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具有舒适设计和高性能的可穿戴电子产品的应用需要具有卓越柔韧性和拉伸性以及良好电学和光学性能的透明电极。在这里,我们提出了基于石墨烯和金属纳米线网络的混合纳米结构作为可拉伸和透明的电极,并研究了它们的光学、电学和机械性能。通过综合研究,获得了高电气和光学特性、优异的弯曲性(对折)、优异的拉伸性(拉伸循环10,000次、单轴方向拉伸应变100%、多轴方向拉伸应变30%)、对电击穿和热氧化的强鲁棒性。我们相信这些结果表明在未来电子产品中具有重大应用前景。
Transparent electrodes with superior flexibility and stretchability as well as good electrical and optical properties are required for applications in wearable electronics with comfort designs and high performances. Here, we present hybrid nanostructures as stretchable and transparent electrodes based on graphene and networks of metal nanowires, and investigate their optical, electrical, and mechanical properties. High electrical and optical characteristics, superb bendability (folded in half), excellent stretchability (10,000 times in stretching cycles with 100% in tensile strain toward a uniaxial direction and 30% in tensile strain toward a multi-axial direction), strong robustness against electrical breakdown and thermal oxidation were obtained through comprehensive study. We believe that these results suggest a substantial promise application in future electronics.
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