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Influence of Water on the Interfacial Behavior of Gallium Liquid Metal Alloys

机译:水对镓液态金属合金界面行为的影响

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摘要

Eutectic gallium indium (EGaIn) is a promising liquid metal for a variety of electrical and optical applications that take advantage of its soft and fluid properties. The presence of a rapidly forming oxide skin on the surface of the metal causes it to stick to many surfaces, which limits the ability to easily reconfigure its shape on demand. This paper shows that water can provide an interfacial slip layer between EGaIn and other surfaces, which allows the metal to flow smoothly through capillaries and across surfaces without sticking. Rheological and surface characterization shows that the presence of water also changes the chemical composition of the oxide skin and weakens its mechanical strength, although not enough to allow the metal to flow freely in microchannels without the slip layer. The slip layer provides new opportunities to control and actuate liquid metal plugs in microchannels-including the use of continuous electrowetting-enabling new possibilities for shape reconfigurable electronics, sensors, actuators, and antennas.
机译:共晶镓铟(EGaIn)是一种有前景的液态金属,可利用其柔软和流体特性,用于各种电气和光学应用。金属表面上快速形成的氧化皮的存在导致其粘附在许多表面上,这限制了根据需要轻松重新配置其形状的能力。本文表明,水可以在EGaIn与其他表面之间提供界面滑移层,从而使金属可以顺利地流过毛细管并跨过表面而不会粘着。流变学和表面表征表明,水的存在还改变了氧化皮的化学成分并削弱了其机械强度,尽管不足以使金属在没有滑层的情况下在微通道中自由流动。滑动层为控制和启动微通道中的液态金属插头提供了新的机会,包括使用连续电润湿技术,从而为形状可重构的电子设备,传感器,执行器和天线提供了新的可能性。

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