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首页> 外文期刊>AIP Advances >Bubble-free injection of liquid metal for the direct microfabrication of leaf-inspired 3D-topological conduit-networks and a flexible serpentine circuit with superior electrical resistance to aging
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Bubble-free injection of liquid metal for the direct microfabrication of leaf-inspired 3D-topological conduit-networks and a flexible serpentine circuit with superior electrical resistance to aging

机译:无泡制注射液体金属,用于直接微生物的叶子启发3D拓扑导管网络和柔性蛇形电路,具有卓越的电阻对老化

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摘要

Flexible circuit boards are widely used in smart consumer electronic devices. In this paper, a novel methodology, which is different from the traditional etching and screen printing methods that generally rely on screen printed conductive ink as a conductor to form the required circuit in a dielectric film, has been reported. Liquid metal was directly injected into biocompatible polymer microchips, based on the air-diffusion mechanism, in order to prevent the circuit board from being directly exposed to the outside environment. The liquid metal circuit board that was produced had good thermal conductivity because the thermal conductivity of gallium is about 60 times that of water and 1000 times higher than that of air. In addition, the liquid metal circuit board has good ductility and repeatability, which is required to meet the extreme deformation that is experienced in most electrical applications. The proposed method has the ability to fabricate irregular circuit boards and complex patterns with channel-lengths as high as 4 m or channel-widths as small as 30 μ m. This method can not only solve the problem of the traditional circuit boards being difficult to modify and repair, but it can also effectively protect the circuit and realize high fidelity of the circuit.
机译:柔性电路板广泛用于智能消费电子设备。本文报道了一种新的方法,其与传统的蚀刻和丝网印刷方法不同,这些方法通常依赖于屏幕印刷导电油墨作为导体,以形成介电膜中所需的电路。基于空气扩散机构,将液态金属直接注入生物相容性聚合物微芯片中,以防止电路板直接暴露于外部环境。产生的液态金属电路板具有良好的导热性,因为镓的导热率为水的热导率约为水的60倍,而不是空气的60倍。此外,液态金属电路板具有良好的延展性和可重复性,这是满足大多数电气应用中经历的极端变形所必需的。所提出的方法能够制造不规则的电路板和具有高达4μm或通道宽度的通道长度的复杂图案,或者宽度小至30μm。这种方法不仅可以解决传统电路板的问题难以修改和修复,而且还可以有效地保护电路并实现电路的高保真度。

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