Department of Micro- and Nanosciences, Aalto University, FI-00076 Aalto, Finland.
Nanotechnology. 2016 Sep 2;27(35):355403. doi: 10.1088/0957-4484/27/35/355403. Epub 2016 Jul 25.
We report on the thermoelectric properties of large-area high-aspect-ratio nanostructures. We fabricate the structures by atomic layer deposition of conformal ZnO thin films on track-etched polycarbonate substrate. The resulting structure consists of ZnO tubules which continue through the full thickness of the substrate. The electrical and thermal properties of the structures are studied both in-plane and out-of-plane. They exhibit very low out-of-plane thermal conductivity down to 0.15 W m(-1) K(-1) while the in-plane sheet resistance of the films was found to be half that of the same film on glass substrate, allowing material-independent doubling of output power of any planar thin-film thermoelectric generator. The wall thickness of the fabricated nanotubes was varied within a range of up to 100 nm. The samples show polycrystalline nature with (002) preferred crystal orientation.
我们报告了大面积高纵横比纳米结构的热电性质。我们通过原子层沉积在刻蚀聚碳酸酯基底上的保形氧化锌薄膜来制备这些结构。所得到的结构由贯穿基底全厚度的氧化锌管组成。我们对结构的平面内和平面外的电学和热学性质进行了研究。它们表现出非常低的平面外热导率,低至 0.15 W m(-1) K(-1),而薄膜的平面内片电阻则发现是相同的薄膜在玻璃基底上的一半,这使得任何平面薄膜热电发电机的输出功率都可以实现独立于材料的翻倍。所制备的纳米管的壁厚在高达 100nm 的范围内变化。这些样品表现出多晶性质,具有(002)择优晶体取向。