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石墨烯层压板的导热系数。

Thermal conductivity of graphene laminate.

机构信息

Phonon Optimized Engineered Materials (POEM) Center, University of California - Riverside , Riverside, California 92521, United States.

出版信息

Nano Lett. 2014 Sep 10;14(9):5155-61. doi: 10.1021/nl501996v. Epub 2014 Aug 14.

Abstract

We have investigated thermal conductivity of graphene laminate films deposited on polyethylene terephthalate substrates. Two types of graphene laminate were studied, as deposited and compressed, in order to determine the physical parameters affecting the heat conduction the most. The measurements were performed using the optothermal Raman technique and a set of suspended samples with the graphene laminate thickness from 9 to 44 μm. The thermal conductivity of graphene laminate was found to be in the range from 40 to 90 W/mK at room temperature. It was found unexpectedly that the average size and the alignment of graphene flakes are more important parameters defining the heat conduction than the mass density of the graphene laminate. The thermal conductivity scales up linearly with the average graphene flake size in both uncompressed and compressed laminates. The compressed laminates have higher thermal conductivity for the same average flake size owing to better flake alignment. Coating plastic materials with thin graphene laminate films that have up to 600× higher thermal conductivity than plastics may have important practical implications.

摘要

我们研究了沉积在聚对苯二甲酸乙二醇酯基底上的石墨烯叠层薄膜的热导率。研究了两种类型的石墨烯叠层,分别为沉积态和压缩态,以确定对热传导影响最大的物理参数。测量使用光热 Raman 技术和一组厚度为 9 至 44 μm 的悬浮样品进行。在室温下,石墨烯叠层的热导率在 40 至 90 W/mK 范围内。出人意料的是,发现石墨烯薄片的平均尺寸和取向比石墨烯叠层的质量密度更重要的参数决定了热传导。在未压缩和压缩的叠层中,热导率与平均石墨烯薄片尺寸呈线性比例关系。由于更好的薄片取向,具有与相同平均薄片尺寸相同的压缩叠层具有更高的热导率。用比塑料高 600 倍的热导率的薄石墨烯叠层薄膜涂覆塑料材料可能具有重要的实际意义。

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