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通过自焊接、自涂层和自修复实现用于超可拉伸芯片集成电路的可逆聚合物-凝胶转变

Reversible polymer-gel transition for ultra-stretchable chip-integrated circuits through self-soldering and self-coating and self-healing.

作者信息

Lopes Pedro Alhais, Santos Bruno C, de Almeida Anibal T, Tavakoli Mahmoud

机构信息

Soft and Printed Microelectronics Lab, Institute of Systems and Robotics, Department of Electrical Engineering, University of Coimbra, Coimbra, Portugal.

出版信息

Nat Commun. 2021 Aug 3;12(1):4666. doi: 10.1038/s41467-021-25008-5.

Abstract

Integration of solid-state microchips into soft-matter, and stretchable printed electronics has been the biggest challenge against their scalable fabrication. We introduce, Pol-Gel, a simple technique for self-soldering, self-encapsulation, and self-healing, that allows low cost, scalable, and rapid fabrication of hybrid microchip-integrated ultra-stretchable circuits. After digitally printing the circuit, and placing the microchips, we trigger a Polymer-Gel transition in physically cross-linked block copolymers substrate, and silver liquid metal composite ink, by exposing the circuits to the solvent vapor. Once in the gel state, microchips penetrate to the ink and the substrate (Self-Soldering), and the ink penetrates to the substrate (Self-encapsulation). Maximum strain tolerance of ~1200% for printed stretchable traces, and >500% for chip-integrated soft circuits is achieved, which is 5x higher than the previous works. We demonstrate condensed soft-matter patches and e-textiles with integrated sensors, processors, and wireless communication, and repairing of a fully cut circuits through Pol-Gel.

摘要

将固态微芯片集成到软物质和可拉伸印刷电子产品中,一直是其可扩展制造面临的最大挑战。我们介绍了一种名为Pol-Gel的简单技术,用于自焊接、自封装和自修复,该技术能够以低成本、可扩展且快速地制造集成微芯片的超可拉伸混合电路。在数字印刷电路并放置微芯片后,通过将电路暴露于溶剂蒸汽中,我们在物理交联的嵌段共聚物基板和银液态金属复合油墨中引发聚合物-凝胶转变。一旦处于凝胶状态,微芯片就会渗透到油墨和基板中(自焊接),油墨也会渗透到基板中(自封装)。印刷可拉伸线路的最大应变容限约为1200%,芯片集成软电路的最大应变容限超过500%,这比之前的工作高出5倍。我们展示了集成了传感器、处理器和无线通信的凝聚态软物质贴片和电子织物,并通过Pol-Gel修复了完全切断的电路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0754/8333313/a93a164ebd9d/41467_2021_25008_Fig1_HTML.jpg

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