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基于波浪形 Ag 纳米线网络的可伸缩、光学透明射频天线。

Reversibly Stretchable, Optically Transparent Radio-Frequency Antennas Based on Wavy Ag Nanowire Networks.

机构信息

Photo-Electronic Hybrids Research Center, Korea Institute of Science and Technology , Seoul 136-791, Republic of Korea.

Department of Chemical Engineering and Materials Science, Chung-Ang University , Seoul 156-756, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2016 Feb 3;8(4):2582-90. doi: 10.1021/acsami.5b10317. Epub 2016 Jan 25.

Abstract

We report a facile approach for producing reversibly stretchable, optically transparent radio-frequency antennas based on wavy Ag nanowire (NW) networks. The wavy configuration of Ag NWs is obtained by floating the NW networks on the surface of water, followed by compression. Stretchable antennas are prepared by transferring the compressed NW networks onto elastomeric substrates. The resulting antennas show excellent performance under mechanical deformation due to the wavy configuration, which allows the release of stress applied to the NWs and an increase in the contact area between NWs. The antennas formed from the wavy NW networks exhibit a smaller return loss and a higher radiation efficiency when strained than the antennas formed from the straight NW networks, as well as an improved stability in cyclic deformation tests. Moreover, the wavy NW antennas require a relatively small quantity of NWs, which leads to low production costs and provides an optical transparency. These results demonstrate the potential of these wavy Ag NW antennas in applications of wireless communications for wearable systems.

摘要

我们报告了一种生产基于波浪形银纳米线 (NW) 网络的可拉伸、光学透明射频天线的简易方法。NW 网络的波浪形结构是通过将其浮在水面上,然后进行压缩而获得的。通过将压缩后的 NW 网络转移到弹性体基底上,制备出可拉伸天线。由于波浪形结构,所得到的天线在机械变形下具有出色的性能,这允许释放施加在 NW 上的应力并增加 NW 之间的接触面积。与由直 NW 网络形成的天线相比,由波浪形 NW 网络形成的天线在应变时具有更小的回波损耗和更高的辐射效率,并且在循环变形测试中具有更好的稳定性。此外,波浪形 NW 天线需要相对较少的 NW,这导致生产成本低,并提供光学透明度。这些结果表明这些波浪形 Ag NW 天线在可穿戴系统的无线通信应用中具有潜力。

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