Nadtochiy Andriy, Kozachenko Viktor, Korotchenkov Oleg, Schlosser Viktor
Department of Physics, Taras Shevchenko National University of Kyiv, 01601 Kyiv, Ukraine.
Department of Electronic Properties of Materials, Faculty of Physics, University of Vienna, A-1090 Wien, Austria.
Nanomaterials (Basel). 2022 Mar 31;12(7):1163. doi: 10.3390/nano12071163.
Nickel films with nanovoids filled with fullerene molecules have been fabricated. The thermoelectric properties of the nanocomposites have been measured from room temperature down to about 30 K. The main idea is that the phonon scattering can be enhanced at the C/matrix heterointerface. The distribution of atoms within the Ni and Ni-C layers has been characterized by Auger depth profiling. The morphology of the grown samples has been checked using cross-sectional scanning electron microscopy (SEM). The Seebeck coefficient and electrical conductivity have been addressed employing an automatic home-built measuring system. It has been found that nanostructuring using Ar ion treatment increases the thermopower magnitude over the entire temperature range. Incorporating C into the resulting voids further increased the thermopower magnitude below ≈200 K. A maximum increase in the Seebeck coefficient has been measured up to four times in different fabricated samples. This effect is attributed to enhanced scattering of charge carriers and phonons at the Ni/C boundary.
已制备出具有填充富勒烯分子纳米空隙的镍膜。已测量了纳米复合材料从室温到约30K的热电性能。主要观点是在碳/基体异质界面处声子散射可得到增强。通过俄歇深度剖析对镍层和镍 - 碳层内的原子分布进行了表征。使用横截面扫描电子显微镜(SEM)检查了生长样品的形态。利用自行搭建的自动测量系统测量了塞贝克系数和电导率。已发现采用氩离子处理进行纳米结构化在整个温度范围内提高了热功率大小。将碳掺入所形成的空隙中在约200K以下进一步提高了热功率大小。在不同制备的样品中测得塞贝克系数最大增加了四倍。这种效应归因于在镍/碳边界处电荷载流子和声子的散射增强。