临时纹身作为一种非传统基底,可在皮肤及其他部位提供舒适和可转移的电子产品

Q1 Materials Science
L. Ferrari, K. Keller, Bernhard Burtscher, F. Greco
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引用次数: 21

摘要

在不断发展的适形电子领域,纹身技术已经从迄今为止的各种方法中脱颖而出。这里,临时纹身纸被用作非传统的基底,以构建可转移的身体适形设备,从而与皮肤建立稳定持久的界面。基于纹身的设备已经在多个领域展示了其能力,主要应用于人类健康生物监测。这种方法正在发展成为最先进的方法,克服了现有技术的一些限制,如皮肤接触电极和汗液分析。临时纹身也被用于其他领域,如有机电子、有机太阳能电池的开发和可转移的可食用晶体管。从传统的真空沉积方法到各种印刷技术,已经证明了临时纹身的多种互补制造方法。在这篇综述中,结合报道和讨论纹身技术的主要制造方法和应用,我们描述了纹身基底的主要特征。对其材料组成和性能给出了新的见解,并讨论了与适形电子学中采用的其他方法相比的优缺点。除了对纹身技术的进步进行全面和最新的综述外,本综述旨在帮助更好地了解这种低成本和通用基底所提供的功能。这有助于为新兴应用开辟新的研究,比如在可持续电子的相关领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temporary tattoo as unconventional substrate for conformable and transferable electronics on skin and beyond
In the growing field of conformable electronics, tattoo technology has emerged from among the various approaches so farHere, temporary tattoo paper is adopted as unconventional substrate to build up transferable body compliant devices, which establishes a stable and long-lasting interface with the skin. Tattoo-based devices have shown their capabilities in multiple fields, with the main application in human health biomonitoring. Such an approach is advancing to become state-of-the-art, overcoming some limits of existing technologies, as in the case of skin-contact electrodes and sweat analysis. Temporary tattoo has also been adopted in other fields, such asorganic electronics, the development of organic solar cells, and transferable edible transistors. Multiple and complementary fabrication approaches on temporary tattoos have been demonstrated, spanning from traditional vacuum-based deposition methods to various printing technologies. In this review, together with reporting and discussing the main fabrication methods and applications of tattoo technology, we describe the main features of the tattoo substrate. New insights into its material composition and properties are given, discussing the pros and cons in comparison to other approaches adopted in conformable electronics. Together with providing a comprehensive and up to date review of advancements in tattoo technology, this review aims to contribute in a better understanding of the capabilities offered by such a low cost and versatile substrate. This can help in opening up new research for emerging applications, like in the relevant field of sustainable electronics.
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来源期刊
Multifunctional Materials
Multifunctional Materials Materials Science-Materials Science (miscellaneous)
CiteScore
12.80
自引率
0.00%
发文量
9
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