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Stretchable conductive elastomer for wireless wearable communication applications

机译:可伸缩的导电弹性体用于无线穿戴式通信应用

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摘要

Wearable devices have provided noninvasive and continuous monitoring of physiological parameters in healthcare applications. However, for the comfortable applications of wearable devices on human body, two key requirements are to replace conventional bulky devices into soft and deformable ones and to have wireless wearable communication. In this paper we present a simple, low-cost and highly efficient all-elastomeric conductor that can be used in a soft radio-frequency (RF) transmission line and antenna. We show a stretchable transmission line and two stretchable antennas fabricated with conventional screen printing. The stretchable conductor used in this fabrication method, which is a mixture of Ag and Polydimethylsiloxane (PDMS), can be stretched at high strains while maintaining a high conductivity, low attenuation and feasible radiation performance. The measured conductivity of the stretchable conductor reaches 1000 S/cm. Additionally, the highly conductive printed Ag-PDMS is utilized to construct transmission lines and antennas. The performance of these stretchable components, especially under different conditions of bending, stretching and twisting, are experimentally examined in common wireless-communication frequency bands. Our results demonstrate that printed Ag-PDMS enabled RF passive components have the desired property and quality for wireless wearable communication applications, which would provide new opportunities for wearable healthcare electronics.
机译:可穿戴设备已在医疗保健应用中提供了对生理参数的无创且连续监测。然而,对于可穿戴设备在人体上的舒适应用,两个关键要求是将常规的笨重设备替换为柔软且可变形的设备,并进行无线可穿戴通信。在本文中,我们提出了一种简单,低成本,高效的全弹性导体,可用于软射频(RF)传输线和天线。我们显示了一条可拉伸的传输线和两个采用常规丝网印刷制成的可拉伸天线。这种制造方法中使用的可拉伸导体是Ag和聚二甲基硅氧烷(PDMS)的混合物,可以在高应变下拉伸,同时保持高电导率,低衰减和可行的辐射性能。测得的可拉伸导体的电导率达到1000 S / cm。另外,高导电印刷的Ag-PDMS用于构造传输线和天线。这些可拉伸组件的性能,特别是在弯曲,拉伸和扭曲的不同条件下,的性能已通过实验在常见的无线通信频段中进行了检验。我们的结果表明,印刷的支持Ag-PDMS的RF无源组件具有无线可穿戴通信应用所需的特性和质量,这将为可穿戴医疗保健电子产品提供新的机会。

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