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Graphene Heat Spreaders and Interconnects for Advanced Electronic Applications

机译:面向高级电子应用的石墨烯散热器和互连

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Graphene revealed a number of unique properties beneficial for electronics, including exceptionally high electron mobility and widely tunable Fermi level. However, graphene does not have an electron energy band gap, which presents a serious hurdle for its applications in digital electronics. A possible route for practical use of graphene in electronics is utilization of its exceptionally high thermal conductivity and electron current conducting properties. This invited review outlines the thermal properties of graphene and describes prospective graphene technologies that are not affected by the absence of the energy band gap. The specific examples include heat spreaders, thermal coatings, high-current density electrodes and interconnects. Our results suggest that the thermal management of advanced electronic devices can become the first industry scale application of graphene.
机译:石墨烯显示出许多有益于电子学的独特性能,包括异常高的电子迁移率和广泛可调的费米能级。然而,石墨烯没有电子能带隙,这为其在数字电子学中的应用提出了严重的障碍。石墨烯在电子中的实际使用的可能途径是利用其异常高的导热率和电子电流传导性能。这篇受邀的评论概述了石墨烯的热性能,并描述了不受能带隙影响的前瞻性石墨烯技术。具体示例包括散热器,热涂层,高电流密度电极和互连。我们的结果表明,先进电子设备的热管理可以成为石墨烯在工业规模上的第一个应用。

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