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Interaction of phonons with spherical nanoparticles embedded densely in simple crystalline matrix. Case of nitrogen-palladium nanocomposite

机译:声子与密集嵌入简单晶体基质中的球形纳米粒子的相互作用。氮钯纳米复合材料案例

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摘要

The results of experimental investigations of thermal conductivity of nanocomposites built of palladium spherical nanoparticles embedded in the structure of crystalline nitrogen are presented in this paper. The investigations were carried out on the samples containing the Pd nanospheres of diameters of 6, 8, 10, 12, 18, and 24 nm at the palladium fraction amounting to 15 of the nanocomposite volume. The measurements were performed with a steady-state heat flow method in the temperature interval of 2-35 K. For the analysis of the experimental results, the relaxation time approximation in the frame of the thermal conductivity Debye model was used. The analysis shows that the nitrogen matrix phonons can effectively interact with spherical nanoparticles in, at least, four different mechanisms. Two of those mechanisms, a diffuse scattering by the boundary of two media (which are the matrix and the material of the nanoparticle) and an oscillating resultant of interaction of nanoparticle phonons with the matrix phonons, result in a decrease of the nanocomposite thermal conductivity. The remaining two mechanisms would be considered nonthermal resistive scattering processes: The first of them is the specular scattering of the matrix phonons by the matrix and the nanoparticle material interface. The second one is a forward scattering, in which the matrix phonon penetrates the nanoparticle and afterward penetrates another one without any resistive interaction with phonons of the crystalline matrix. The analysis shows that the nonresistive processes are significantly more frequent in the investigated nanocomposites than the resistive ones. Such a conclusion is in perfect agreement with the results of the analysis of the phonon mean free path in the nitrogen crystal-palladium nanospheres composite. Published under an exclusive license by AIP Publishing.
机译:实验调查的结果导热系数的构建的纳米复合材料球形钯纳米粒子嵌入晶体结构的氮在这篇文章中。包含Pd团簇的样本直径6、8、10、12、18、24海里钯分数达15%纳米复合材料体积。与稳态热流的方法执行2-35 K的温度区间。实验结果的分析弛豫时间近似的框架热导率德拜模型使用。分析表明,氮矩阵声子能有效地与球形互动纳米颗粒,至少四个不同机制。两个媒体的边界(散射矩阵的材料吗纳米颗粒)和一个振荡的合成纳米颗粒声子的相互作用矩阵声子,导致减少的纳米复合材料的热导率。两种机制将被视为非热能的电阻散射过程:第一是矩阵的镜面散射声子矩阵和纳米材料接口。矩阵声子散射,穿透纳米颗粒和随后穿透一个没有任何电阻交互声子晶体的矩阵。表明nonresistive过程更频繁的调查比电阻的纳米复合材料。结论是在完美的协议分析声子平均自由的结果氮crystal-palladium路径团簇合成的。独家许可证每年出版。

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