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Low cross-plane thermal conductivity of sub-1 μm polycrystalline silicon thin films for thermoelectric applications

机译:热电应用中低于1μm的多晶硅薄膜的低横断面热导率

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摘要

Silicon thin films with sub-1 mu m thickness are of technological significance in many electronic and energy conversion devices. While a number of previous works have investigated the in-plane thermal conductivity of silicon films, less reported is their cross-plane thermal conductivity, particularly at sub-1 mu m thickness. Here, we report on the cross-plane thermal conductivity of sub-1 mu m, undoped, polycrystalline silicon films (75 and 246 nm) with columnar grain structure at room temperature. Using an optical pump-probe thermoreflectance metrology and a semi-classical phonon transport model, we find the cross-plane thermal conductivity to be 4.5 +/- 0.8 and 12.5 +/- 2.3 W m(-1) K-1 for the 75 and 246 nm films, respectively. To the best of our knowledge, the cross-plane thermal conductivities we report here are the lowest ever reported for undoped polycrystalline silicon films with columnar grain structure, which can be ascribed to the impact of increased phonon scattering by a higher density of defects as compared to previous data. Given that a significant reduction in phonon thermal conductivity is required to enhance the thermoelectric energy conversion efficiency, our findings may be promising particularly for thermoelectric energy conversion applications.
机译:在许多电子和能量转换设备中,厚度小于1微米的硅薄膜具有重要的技术意义。尽管许多先前的研究已经研究了硅膜的面内导热率,但关于其跨面导热率的报道较少,特别是在小于1微米的厚度下。在这里,我们报道了在室温下具有柱状晶粒结构的亚1微米,未掺杂的多晶硅薄膜(75和246 nm)的横断面热导率。使用光学泵探针热反射计量学和半经典声子传输模型,我们发现75的跨面热导率分别为4.5 +/- 0.8和12.5 +/- 2.3 W m(-1)K-1和246 nm薄膜。据我们所知,此处报道的横断面热导率是具有柱状晶粒结构的未掺杂多晶硅薄膜的有史以来最低的,这可以归因于与更高的缺陷密度相比,声子散射增加的影响。到以前的数据。鉴于需要显着降低声子的导热系数以提高热电能量转换效率,因此我们的发现尤其对于热电能量转换应用而言可能是有前途的。

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