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首页> 外文期刊>Applied Surface Science >A perspective on effective medium models of thermal conductivity in (ultra) nanocrystalline diamond films
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A perspective on effective medium models of thermal conductivity in (ultra) nanocrystalline diamond films

机译:(超)纳米晶金刚石膜中导热系数有效介质模型的观点

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摘要

Thermal conductivity of nanocrystalline and ultra-nanocrystalline films is analyzed with effective medium theory (EMT) models. The existing EMT models use the spherical inclusion approximation. Although this approximation works quite well it is inconsistent, mostly with respect to the maximal packing of 74%, which may be unrealistic for polycrystalline films. To check the consistency of these models we devise an EMT model with arbitrarily shaped inclusions. We pick the EMT model with cubic inclusions and we compare its results with the results of the EMT model with spherical inclusions. It is found a very good agreement between both calculations. This agreement is explained by general geometrical arguments. We further employ these models to analyze thermal conductivity of nanocrystalline and ultra-nanocrystalline diamond films. It is noticed that the effective conductivity is strongly affected not only by the boundary Kapitza resistance but also by intra-grain scattering for grain sizes below 100 nm. Generally, both intra-grain conductivity and Kapitza resistance increase with grain size. However, the effect of Kapitza resistance increase is negligible due to the geometrical factor accompanying Kapitza resistance contribution to the effective conductivity.
机译:使用有效介质理论(EMT)模型分析了纳米晶体和超纳米晶体薄膜的热导率。现有的EMT模型使用球面包含近似。尽管这种近似效果很好,但通常在最大填充量为74%时并不一致,这对于多晶薄膜可能是不现实的。为了检查这些模型的一致性,我们设计了具有任意形状的夹杂物的EMT模型。我们选择具有立方夹杂物的EMT模型,并将其结果与具有球形夹杂物的EMT模型的结果进行比较。在两个计算之间发现非常好的一致性。通用几何参数解释了该一致性。我们进一步采用这些模型来分析纳米晶和超纳米晶金刚石膜的热导率。注意到,对于小于100nm的晶粒,有效电导率不仅受到边界Kapitza电阻的强烈影响,而且还受到晶粒内散射的强烈影响。通常,晶粒内电导率和Kapitza电阻均随晶粒尺寸而增加。然而,由于伴随Kapitza电阻对有效电导率的贡献的几何因素,Kapitza电阻增加的影响可以忽略。

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