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Electrothermal Characterization of the Electrical Resistance of Graphene Contacts for Packages

机译:用于包装的石墨烯接触电阻的电热表征

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This paper deals with the electro-thermal characterization of graphene-based materials that are proposed to improve the performance of the electronic packages. Two materials are investigated: multi-walled carbon nanotubes and graphene nanoplatelets. In both cases, commercial materials have been used, thus potentially suitable for a large mass production. Electrical resistance for varying values of the temperature is here measured by means of four-probe technique. Theoretical models are also provided to justify the observed behavior. The results demonstrate that outstanding and favorable properties of graphene such as the stability of the electrical resistance with temperature increase, can be lost when considering real-world realization of contacts, where the quality of the fabrication control is low.
机译:本文涉及基于石墨烯的材料的电热表征,提出了提高电子包装的性能。研究了两种材料:多壁碳纳米管和石墨烯纳米纳米键。在这两种情况下,已经使用了商业材料,因此可能适用于大量批量生产。这里通过四探针技术测量温度的变化值的电阻。还提供了理论模型,以证明观察到的行为。结果表明,在考虑真实世界的接触的情况下,石墨烯的突出和有利性,例如电阻的稳定性,可以丢失,在考虑到真实的触点时,可以丢失,其中制造控制的质量低。

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