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首页> 外文期刊>Components, Packaging and Manufacturing Technology, IEEE Transactions on >Covalent Anchoring of Carbon Nanotube-Based Thermal Interface Materials Using Epoxy-Silane Monolayers
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Covalent Anchoring of Carbon Nanotube-Based Thermal Interface Materials Using Epoxy-Silane Monolayers

机译:环氧树脂单层基于碳纳米管的热界面材料的共价锚固

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摘要

With the ever increasing demand for improved thermal management solutions in modern electronic devices, carbon nanotubes (CNTs) have been suggested as a candidate material for thermal interface materials (TIMs). However, the interfacial resistance between CNTs and matching substrate is huge due to poor interaction at the interface. With the help of chemical functionalization, these materials can be exploited to their full potential in TIM applications. By utilizing the epoxy-silane-based monolayers, covalent anchoring can be obtained between the CNTs and target substrate in order to bridge the interface, where high resistances, otherwise, would arise. To adapt CNT arrays to the epoxy chemistry, the CNTs have subsequently been subjected to nitrogen plasma in order to activate them with amino groups. The thermal interfaces were measured, and the thermal resistance was found to be decreased by 5% in comparison with the reference samples.
机译:随着对现代电子设备中改进的热管理解决方案的需求增加,已经提出了碳纳米管(CNT)作为热界面材料(TIMS)的候选材料。然而,由于在界面处的相互作用差,CNT和匹配基板之间的界面抗性是巨大的。借助化学官能化,这些材料可以利用它们在TIM应用中的全部潜力。通过利用环氧树脂 - 硅烷的单层,可以在CNT和靶衬底之间获得共价锚固,以便将界面桥接,其中否则会出现高电阻。为了使CNT阵列适应环氧化学性,随后对CNT进行了氮血浆,以便用氨基激活它们。测量热界面,与参考样品相比,发现热阻减少5%。

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