Chang Hao, Zhang Pan, Guo Rui, Cui Yuntao, Hou Yi, Sun Ziqiao, Rao Wei
Beijing Key Lab of CryoBiomedical Engineering and Key Lab of Cryogenics, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
School of Engineering, University of Chinese Academy of Sciences, Beijing 100049, China.
ACS Appl Mater Interfaces. 2020 Mar 25;12(12):14125-14135. doi: 10.1021/acsami.9b20430. Epub 2020 Feb 21.
Gallium-based liquid metals are applied in the fabrication of soft electronics because of their conductivity and flexibility. However, the large surface tension and weak adhesion of liquid metals limit the available printing substrates. Recent researches indicate that amalgamating metal particles can turn liquid metal from fluid into a paste which has superb electrical conductivity, plasticity, and strong adhesion to substrates. In this work, a recoverable liquid metal paste was made by mixing eutectic Ga-In alloy and nonmetallic SiO (quartz) particles (Ga-In-SiO paste, called GIS). GIS has excellent conductivity and printable properties similar to those of previously reported liquid metal pastes. Furthermore, the bonding between Ga-In alloy and quartz particles is reversible. In acidic or alkaline solution, Ga-In alloy can be separated from quartz particles and agglomerated to bulk by stirring. Moreover, the study of the mechanism of adhesion behavior suggests that extruding fresh liquid metal droplets to form more oxide and shearing friction are the critical factors for adhesion. This work proposed a new liquid metal paste with a reversible rheological property and promoted the understanding of the working principle of liquid metal paste.
基于镓的液态金属因其导电性和柔韧性而被应用于软电子器件的制造。然而,液态金属的大表面张力和弱附着力限制了可用的印刷基板。最近的研究表明,将金属颗粒混合可以使液态金属从流体转变为具有优异导电性、可塑性且对基板有强附着力的糊状物。在这项工作中,通过将共晶镓铟合金与非金属二氧化硅(石英)颗粒混合制成了一种可回收的液态金属糊(镓铟-二氧化硅糊,简称GIS)。GIS具有与先前报道的液态金属糊类似的优异导电性和可印刷性能。此外,镓铟合金与石英颗粒之间的结合是可逆的。在酸性或碱性溶液中,镓铟合金可以从石英颗粒中分离出来,并通过搅拌团聚成块状。此外,对粘附行为机制的研究表明,挤出新鲜的液态金属滴以形成更多氧化物和剪切摩擦是粘附的关键因素。这项工作提出了一种具有可逆流变特性的新型液态金属糊,并促进了对液态金属糊工作原理的理解。