4.8 Article

Scalable Strategy to Directly Prepare 2D and 3D Liquid Metal Circuits Based on Laser-Induced Selective Metallization

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 14, 期 17, 页码 20000-20013

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.2c01201

关键词

liquid metal circuits; laser-induced selective metallization; 3D circuits; direct preparation; Galinstan

资金

  1. National Natural Science Foundation of China [52073194, 51773126]
  2. Sichuan Science and Technology Program (Science and Technology Innovation Talent Foundation of Sichuan Province) [2022JDRC0020, 2020SCUNG203]
  3. State Key Laboratory of Polymer Materials Engineering [sklpme2018-2-09]

向作者/读者索取更多资源

This study combines laser-induced selective metallization and selective wetting to directly prepare 2D and 3D liquid metal circuits. The prepared liquid metal circuits exhibit strong adhesion, good flexibility, self-healing ability, and acid-alkaline resistance, and have great application prospects.
Selective wetting of a gallium-based liquid metal on copper circuits is one of the ways to prepare liquid metal circuits. However, the complex fabrication processes of an adhesion layer between copper circuits (or patterns) and substrates were still inevitable, limiting scalable applications. Our work developed a facile way to directly prepare 2D and 3D liquid metal circuits by combining laser-induced selective metallization and selective wetting for the first time. The copper template was obtained on elastomers using laser-induced selective metallization, and high-resolution liquid metal circuits were fabricated by brushing Galinstan on the copper template in the alkali solution. The distribution of Cu element not only was on the top surface but also extended to the interior of the elastomer substrate. This revealed that the Cu layer prepared by laser-induced selective metallization is born to firmly embed into the substrate, which endowed the circuits with strong adhesion, reaching the highest SB level. Moreover, the prepared liquid metal circuits (or patterns) had a typical layered structure. The liquid metal circuits exhibit good flexibility, stretchability, self-healing ability, and acid-alkaline resistance. Compared with the traditional methods of patterning liquid metals, fabricating liquid metal circuits based on laser-induced selective metallization has irreplaceable advantages, such as strong adhesion between circuits and substrate, fabricating 3D circuits, good acid-alkaline resistance, cost-effectiveness, maskless use, time savings, arbitrary design of patterns, and convenient operation, which endow this method with great application prospect.

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