Chen Yi, Ma Biao, Chen Gangsheng, Zhang Jin, Feng Dezhi, Tian Wei, Zhang Taiming, Zhao Chao, Rong Fei, Liu Hong
State Key Laboratory of Digital Medical Engineering, School of Biological Science and Medical Engineering, Southeast University, Nanjing 210096, China.
ACS Appl Mater Interfaces. 2023 Oct 24. doi: 10.1021/acsami.3c11966.
Thin-film metal conductors featuring high conductivity and stretchability are basic building blocks for high-performance conformable electronics. Gallium-based liquid metals are attractive candidates for thin-film conductors due to their intrinsic stretchability and ease of processing. Moreover, the phase change nature of liquid metal provides an opportunity to create conformal electronics in a substrate-free manner. However, thin liquid metal films tend to break during the solid-to-liquid transition due to the high surface tension of liquid metal. Here, we created breakup-free liquid metal thin films by the electrochemical oxidation of solid gallium films. We show that electrochemical oxidation can enhance the mechanical strength of the gallium oxide layer and its interfacial adhesion to the gallium core. When heated to the liquid state, the oxidized gallium films can maintain their structural integrity on various solid substrates, hydrogels, and even the water surface. The solid-liquid phase change-induced stiffness decrease allowed the gallium films to be conformably attached to various nonplanar surfaces upon heating or water transfer printing. Moreover, we also found that enhanced electrochemical oxidation can result in the formation of structure color due to nanoporous structures on the film surface. We also demonstrate the applications of oxidized liquid metal films in functional electronics, electrophysiological monitoring, and tattoo art.
具有高导电性和可拉伸性的薄膜金属导体是高性能贴合电子器件的基本构建单元。基于镓的液态金属因其固有的可拉伸性和易于加工而成为薄膜导体的有吸引力的候选材料。此外,液态金属的相变特性为以无基板方式制造贴合电子器件提供了机会。然而,由于液态金属的高表面张力,薄液态金属膜在固-液转变过程中容易破裂。在此,我们通过对固态镓膜进行电化学氧化制备出无破裂的液态金属薄膜。我们表明,电化学氧化可以增强氧化镓层的机械强度及其与镓核的界面附着力。当加热到液态时,氧化镓膜可以在各种固体基板、水凝胶甚至水面上保持其结构完整性。固-液相变引起的刚度降低使镓膜在加热或水转印时能够贴合附着在各种非平面表面上。此外,我们还发现,增强的电化学氧化会由于膜表面的纳米多孔结构而导致结构色的形成。我们还展示了氧化液态金属膜在功能电子学、电生理监测和纹身艺术中的应用。