Banerjee Arghya, Halder Nilanjan
Department of Aerospace Engineering Sciences, University of Colorado at Boulder, Boulder, Colorado 80309, USA.
J Nanosci Nanotechnol. 2010 Jul;10(7):4252-8. doi: 10.1166/jnn.2010.2675.
Electrochemical growth of highly oriented Ni nano-rods within the arrays of anodic alumina pores has various important applications including magnetic, sensor and field-emission displays. Applicability of ordered nano-rods in practical devices requires proper designing of the structure with high stability and robustness. Anodic alumina membrane grown on Si substrate offers less fragile, stable, compact and robust structure as a host for nano-rod growth through the nanopores. We have fabricated highly ordered Ni-nanorods via cost-effective electrochemical deposition process within a porous alumina matrix. The device structure composed of Ni nano-rod/porous-alumina/tantalum/silicon-substrate. Metallic Ta is used as the electrode for Ni electrodeposition. Electron Microscopic images depict the highly uniform growth of Ni nano-rods through the alumina pores with nano-rod length around 100 nm. Energy dispersive X-ray analysis verifies the presence of Ni within the sample. One of the important applications of Ni nano-rods is the field emission devices. The host alumina template in the alumina/nano-rod/Si structure is believed to provide necessary stability of the proposed device for practical applications. Ni nano-rods encapsulated within the alumina pores with a top metallic layer can be used as a field-emission device for potential low power panel applications.
在阳极氧化铝孔阵列中通过电化学方法生长高度取向的镍纳米棒有各种重要应用,包括磁性、传感器和场发射显示器等方面。有序纳米棒在实际器件中的适用性要求设计出具有高稳定性和坚固性的结构。生长在硅衬底上的阳极氧化铝膜作为纳米棒通过纳米孔生长的基质,具有更不易破碎、稳定、致密且坚固的结构。我们通过具有成本效益的电化学沉积工艺,在多孔氧化铝基质中制备了高度有序的镍纳米棒。该器件结构由镍纳米棒/多孔氧化铝/钽/硅衬底组成。金属钽用作镍电沉积的电极。电子显微镜图像显示镍纳米棒通过氧化铝孔高度均匀地生长,纳米棒长度约为100纳米。能量色散X射线分析证实了样品中镍的存在。镍纳米棒的重要应用之一是场发射器件。氧化铝/纳米棒/硅结构中的主体氧化铝模板被认为可为实际应用中所提出的器件提供必要的稳定性。封装在氧化铝孔内且顶部有金属层的镍纳米棒可作为潜在低功耗平板应用的场发射器件。