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A Study of the Electrical Properties of the Polydopamine Coating of CNTs: A New Path to Fabricate Copper-Carbon Composites

机译:CNTs多胺涂层电性能研究:制备铜 - 碳复合材料的新途径

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In present days, the continuous miniaturization of electronic devices comes along with a problematic reduction of their life-time. This is due to the underlying current density being operated increasingly close to the maximum current-carrying capacity (ampacity) of the materials (copper, gold...) used in the conduction channels of micro-circuitry. In this respect, there is a growing attention for new materials with higher ampacity and copper-carbon nanotube (CNT) composites could constitute a promising alternative. The interest of such copper-carbon composites relies on the combination of the complementary properties of both materials: the high conductivity of copper and the high ampacity of CNTs.
机译:在目前的日子里,电子设备的连续小型化伴随着它们的生命时间的问题减少。 这是由于潜在的电流密度越来越靠近微电路传导通道中使用的材料(铜,金...)的最大电流承载能力(铜,金...)。 在这方面,对具有较高的较高的新材料具有越来越关注,并且铜 - 碳纳米管(CNT)复合材料可以构成有希望的替代品。 这种铜碳复合材料的兴趣依赖于两种材料的互补特性的组合:铜的高导电性和CNT的高度高。

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