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首页> 外文期刊>Journal of Physics. Condensed Matter >Dependence of the thermal conductivity of two-dimensional graphite nanoplatelet-based composites on the nanoparticle size distribution
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Dependence of the thermal conductivity of two-dimensional graphite nanoplatelet-based composites on the nanoparticle size distribution

机译:二维石墨纳米片基复合材料的热导率对纳米粒度分布的依赖性

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摘要

We report the thermal conductivities of graphite nanoplatelet-epoxy composites prepared by exfoliation of natural graphite flakes of varying lateral sizes. We found that utilization of natural graphite flakes of the optimum lateral dimensions (∼200-400 μm) as a starting material for exfoliation significantly enhanced the thermal conductivity of the composite. In order to understand this enhancement we developed a procedure for evaluation of the particle size distribution of graphite nanoplatelets and correlated the measured distributions with the resulting thermal conductivities. In order to expand the scope of our study we applied our statistical and thermal analysis to commercially available graphite nanoplatelet materials.
机译:我们报告了通过剥落不同横向尺寸的天然石墨片而制备的石墨纳米片-环氧树脂复合材料的导热性。我们发现,利用具有最佳横向尺寸(约200-400μm)的天然石墨薄片作为剥落的起始材料,可以显着提高复合材料的导热性。为了理解这种增强,我们开发了一种评估石墨纳米片的粒度分布的程序,并将测得的分布与所得的热导率相关联。为了扩大我们的研究范围,我们将统计和热分析应用于可商购的石墨纳米片材料。

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