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Fabrication methods and applications of microstructured gallium based liquid metal alloys

机译:微结构镓基液态金属合金的制备方法和应用

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This review contains a comparative study of reported fabrication techniques of gallium based liquid metal alloys embedded in elastomers such as polydimethylsiloxane or other rubbers as well as the primary challenges associated with their use. The eutectic gallium-indium binary alloy (EGaIn) and gallium-indium-tin ternary alloy (galinstan) are the most common non-toxic liquid metals in use today. Due to their deformability, non-toxicity and superior electrical conductivity, these alloys have become very popular among researchers for flexible and reconfigurable electronics applications. All the available manufacturing techniques have been grouped into four major classes. Among them, casting by needle injection is the most widely used technique as it is capable of producing features as small as 150 nm width by high-pressure infiltration. One particular fabrication challenge with gallium based liquid metals is that an oxide skin is rapidly formed on the entire exposed surface. This oxide skin increases wettability on many surfaces, which is excellent for keeping patterned metal in position, but is a drawback in applications like reconfigurable circuits, where the position of liquid metal needs to be altered and controlled accurately. The major challenges involved in many applications of liquid metal alloys have also been discussed thoroughly in this article.
机译:这篇综述包含了对报道的嵌入在弹性体(如聚二甲基硅氧烷或其他橡胶)中的镓基液态金属合金制造技术的比较研究,以及与之相关的主要挑战。共晶镓铟二元合金(EGaIn)和镓铟锡三元合金(galinstan)是当今使用的最常见的无毒液态金属。由于它们的可变形性,无毒性和出色的导电性,这些合金在柔性和可重构电子应用的研究人员中非常受欢迎。所有可用的制造技术已分为四个主要类别。其中,针刺铸造是使用最广泛的技术,因为它能够通过高压渗透产生宽度小于150 nm的特征。镓基液态金属的一个特殊的制造挑战是在整个暴露的表面上迅速形成氧化皮。这种氧化物表皮增加了许多表面的润湿性,这对于将图案化的金属保持在适当的位置非常有用,但是在诸如可重配置的电路等应用中是一个缺点,在这种应用中,液态金属的位置需要精确地更改和控制。本文还详细讨论了液态金属合金许多应用中涉及的主要挑战。

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