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Breathable and Skin-Conformal Electronics with Hybrid Integration of Microfabricated Multifunctional Sensors and Kirigami-Structured Nanofibrous Substrates

机译:透气和皮肤保形电子器件,混合集成了微加工多功能传感器和Kirigami结构的纳米纤维基板

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摘要

Skin-integrated soft electronics have attracted extensive research attention due to their potential utility for fitness monitoring, disease management, human–machine interfaces, and other applications. Although many materials and device components are explored for the construction of skinintegrated systems, achieving multifunctional sensor platform combined with good breathability and conformability on the skin remains difficult. This challenge is partly due to the processing incompatibility between planarfabricated microelectronics and biocompatible porous substrates. Here, a fabrication strategy that can overcome this limitation, leading to largearea multifunctional skin electronics with breathability and conformability required for wearable applications, is reported. In this scheme, a hybrid integration of high-performance microfabricated sensors and nanofibrous soft substrates is made possible with stamp-based transferring techniques combined with electrospinning. The resulting membrane devices exhibit tissue-like mechanical properties with high permeability for vapor transport. In addition, kirigami structures can be introduced into these membranes, providing high stretchability and 3D conformability for large-area integration on the skin. The multifunctional sensors array allow for spatiotemporal measurement of bioelectrical signals, temperature, skin hydration, and potentially many other physiological parameters. The robust performance and manufacturing scalability provided by these multifunctional skin electronics may create further opportunities for the development of advanced wearable systems.
机译:皮肤集成软电子学因其在健身监测、疾病管理、人机界面和其他应用方面的潜在效用而受到广泛的研究关注。尽管探索了许多材料和设备组件来构建皮肤集成系统,但实现多功能传感器平台与良好的透气性和贴合性相结合仍然很困难。这一挑战部分是由于平面制造的微电子器件和生物相容性多孔基板之间的加工不相容性。本文报道了一种可以克服这一限制的制造策略,从而生产出具有可穿戴应用所需的透气性和顺应性的大面积多功能皮肤电子产品。在该方案中,通过基于冲压的转移技术结合静电纺丝,实现了高性能微加工传感器和纳米纤维软基板的混合集成。由此产生的膜器件具有类似组织的机械性能,具有高透气性,可用于蒸汽传输。此外,可以将kirigami结构引入这些膜中,提供高拉伸性和3D贴合性,以便在皮肤上大面积整合。多功能传感器阵列允许对生物电信号、温度、皮肤水合作用以及潜在的许多其他生理参数进行时空测量。这些多功能皮肤电子产品提供的强大性能和制造可扩展性可能为先进可穿戴系统的开发创造更多机会。

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