Stretchable hybrid electronics: combining rigid electronic devices with stretchable interconnects into high-performance on-skin electronics

IF 3.7 3区 工程技术 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Byeongmoon Lee, Hyeon Cho, Sujin Jeong, Jae-Jun Yoon, Dongju Jang, Dong Keon Lee, Dahyun Kim, Seungjun Chung, Yongtaek Hong
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引用次数: 10

Abstract

Stretchable hybrid electronics (SHE) that combine high-performance rigid electronic devices with stretchable interconnects offer a facile route for accessing and processing bio-signals and human interactions. Incorporated with sensors and wireless communications, SHE achieves novel applications such as biomedical diagnosis, skin prosthetics, and robotic skin. The implementation of reliable SHE requires the comprehensive development of stretchable electrodes, bonding techniques, and strain-engineered integration schemes. This review covers the recent development of enabling technologies for SHE in terms of materials, structures, and system engineering. We introduce various strategies for stretchable interconnects based on novel materials and structural designs. In particular, we classify SHE into three groups based on strain-relief configurations: thin-film devices on rigid islands, rigid devices with stretchable bridges, and flexible circuits with stretchable bridges. Appropriate methods for substrates, stretchable interconnects, and bonding between rigid and soft components and their pros and cons are extensively discussed. We also explore state-of-the-art SHE in advanced human-machine interfaces and discuss the challenges and prospects for future directions.
可拉伸混合电子产品:将刚性电子设备与可拉伸互连相结合,形成高性能的皮肤电子产品
可拉伸混合电子(SHE)将高性能刚性电子设备与可拉伸互连相结合,为访问和处理生物信号和人类互动提供了便捷的途径。结合传感器和无线通信,SHE实现了新的应用,如生物医学诊断,皮肤修复和机器人皮肤。实现可靠的SHE需要全面发展可拉伸电极、键合技术和应变工程集成方案。这篇综述从材料、结构和系统工程的角度介绍了SHE技术的最新发展。我们介绍了基于新材料和结构设计的各种可拉伸互连策略。特别地,我们根据应变释放结构将SHE分为三组:刚性岛上的薄膜器件,具有可拉伸桥的刚性器件和具有可拉伸桥的柔性电路。广泛讨论了基板,可拉伸互连以及刚性和软组件之间的粘合的适当方法及其优缺点。我们还探讨了先进人机界面中最先进的SHE,并讨论了未来方向的挑战和前景。
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来源期刊
Journal of Information Display
Journal of Information Display MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
7.10
自引率
5.40%
发文量
27
审稿时长
30 weeks
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