Sondors Raitis, Kosmaca Jelena, Kunakova Gunta, Jasulaneca Liga, Ramma Matiss Martins, Meija Raimonds, Kauranens Edijs, Antsov Mikk, Erts Donats
Institute of Chemical Physics, University of Latvia, 1 Jelgavas str., LV-1004 Riga, Latvia.
Department of Chemistry, University of Latvia, 1 Jelgavas str., LV-1004 Riga, Latvia.
Nanomaterials (Basel). 2020 May 29;10(6):1051. doi: 10.3390/nano10061051.
Size distribution, Young's moduli and electrical resistivity are investigated for CuO nanowires synthesized by different thermal oxidation methods. Oxidation in dry and wet air were applied for synthesis both with and without an external electrical field. An increased yield of high aspect ratio nanowires with diameters below 100 nm is achieved by combining applied electric field and growth conditions with additional water vapour at the first stage of synthesis. Young's moduli determined from resonance and bending experiments show similar diameter dependencies and increase above 200 GPa for nanowires with diameters narrower than 50 nm. The nanowires synthesized by simple thermal oxidation possess electrical resistivities about one order of magnitude lower than the nanowires synthesized by electric field assisted approach in wet air. The high aspect ratio, mechanical strength and robust electrical properties suggest CuO nanowires as promising candidates for NEMS actuators.
对通过不同热氧化方法合成的CuO纳米线的尺寸分布、杨氏模量和电阻率进行了研究。在有和没有外部电场的情况下,分别采用干空气和湿空气中的氧化法进行合成。通过在合成的第一阶段将外加电场和生长条件与额外的水蒸气相结合,实现了直径低于100nm的高纵横比纳米线产量的增加。通过共振和弯曲实验测定的杨氏模量显示出相似的直径依赖性,对于直径小于50nm的纳米线,杨氏模量增加到200GPa以上。通过简单热氧化合成的纳米线的电阻率比在湿空气中通过电场辅助方法合成的纳米线低约一个数量级。高纵横比、机械强度和稳健的电学性能表明CuO纳米线是NEMS致动器的有前途的候选材料。