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Rapid Fabrication of Epidermal Paper-Based Electronic Devices Using Razor Printing

机译:使用剃刀印刷技术快速制造基于表皮纸的电子设备

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摘要

This work describes the use of a benchtop razor printer to fabricate epidermal paper-based electronic devices (EPEDs). This fabrication technique is simple, low-cost, and compatible with scalable manufacturing processes. EPEDs are fabricated using paper substrates rendered omniphobic by their cost-effective silanization with fluoroalkyl trichlorosilanes, making them inexpensive, water-resistant, and mechanically compliant with human skin. The highly conductive inks or thin films attached to one of the sides of the omniphobic paper makes EPEDs compatible with wearable applications involving wireless power transfer. The omniphobic cellulose fibers of the EPED provide a moisture-independent mechanical reinforcement to the conductive layer. EPEDs accurately monitor physiological signals such as ECG (electrocardiogram), EMG (electromyogram), and EOG (electro-oculogram) even in high moisture environments. Additionally, EPEDs can be used for the fast mapping of temperature over the skin and to apply localized thermotherapy. Our results demonstrate the merits of EPEDs as a low-cost platform for personalized medicine applications.
机译:这项工作描述了使用台式剃刀打印机制造基于表皮纸的电子设备(EPED)。该制造技术简单,低成本并且与可扩展的制造工艺兼容。 EPED是使用纸质基材制成的,这种纸质材料是通过用氟代烷基三氯硅烷进行经济高效的硅烷化处理而使其具有憎水性的,从而使其价格低廉,耐水且在机械上与人体皮肤相容。附着在全憎纸一侧上的高导电性墨水或薄膜使EPED与涉及无线电力传输的可穿戴应用兼容。 EPED的全疏水性纤维素纤维为导电层提供了与水分无关的机械增强。 EPED甚至在高湿度环境下也能准确监测生理信号,例如ECG(心电图),EMG(肌电图)和EOG(电眼图)。此外,EPED可用于快速测绘皮肤上的温度并进行局部热疗。我们的结果证明了EPED作为个性化医学应用的低成本平台的优势。

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