Nanoscale Res Lett. 2009 Apr 7;4(7):699-704. doi: 10.1007/s11671-009-9302-1.
Highly uniform and c-axis-aligned ZnO nanorod arrays were fabricated in predefined patterns by a low temperature homoepitaxial aqueous chemical method. The nucleation seed patterns were realized in polymer and in metal thin films, resulting in, all-ZnO and bottom-contacted structures, respectively. Both of them show excellent geometrical uniformity: the cross-sectional uniformity according to the scanning electron micrographs across the array is lower than 2%. The diameter of the hexagonal prism-shaped nanorods can be set in the range of 90-170 nm while their typical length achievable is 0.5-2.3 mum. The effect of the surface polarity was also examined, however, no significant difference was found between the arrays grown on Zn-terminated and on O-terminated face of the ZnO single crystal. The transmission electron microscopy observation revealed the single crystalline nature of the nanorods. The current-voltage characteristics taken on an individual nanorod contacted by a Au-coated atomic force microscope tip reflected Schottky-type behavior. The geometrical uniformity, the designable pattern, and the electrical properties make the presented nanorod arrays ideal candidates to be used in ZnO-based DC nanogenerator and in next-generation integrated piezoelectric nano-electromechanical systems (NEMS).
采用低温同质外延水热化学法,在预定图案中制备了高度均匀且沿 c 轴取向的 ZnO 纳米棒阵列。在聚合物和金属薄膜中实现了成核种子图案,分别得到了全 ZnO 和底部接触结构。它们都表现出优异的几何均匀性:根据跨阵列的扫描电子显微镜照片,横截面均匀性低于 2%。六方棱柱形纳米棒的直径可以设置在 90-170nm 的范围内,而其可达到的典型长度为 0.5-2.3μm。还研究了表面极性的影响,但在 ZnO 单晶的 Zn 终止面和 O 终止面上生长的阵列之间没有发现明显差异。透射电子显微镜观察表明纳米棒具有单晶性质。通过涂覆金的原子力显微镜尖端接触的单个纳米棒的电流-电压特性反映了肖特基型行为。呈现的纳米棒阵列具有几何均匀性、可设计图案和电性能,使其成为基于 ZnO 的直流纳米发电机和下一代集成压电纳机电系统(NEMS)的理想候选者。