Ibupoto Zafar Hussain, Khun Kimleang, Eriksson Martin, AlSalhi Mohammad, Atif Muhammad, Ansari Anees, Willander Magnus
Physical Electronics and Nanotechnology Division, Department of Science and Technology, Campus Norrköping, Linköping University, SE-60174 Norrköping, Sweden.
Department of Physics, Chemistry, and Biology (IFM), Linköping University, 58183 Linköping, Sweden.
Materials (Basel). 2013 Aug 19;6(8):3584-3597. doi: 10.3390/ma6083584.
Well aligned ZnO nanorods have been prepared by a low temperature aqueous chemical growth method, using a biocomposite seed layer of ZnO nanoparticles prepared in starch and cellulose bio polymers. The effect of different concentrations of biocomposite seed layer on the alignment of ZnO nanorods has been investigated. ZnO nanorods grown on a gold-coated glass substrate have been characterized by X-ray diffraction (XRD) and field emission scanning electron microscopy (FESEM) techniques. These techniques have shown that the ZnO nanorods are well aligned and perpendicular to the substrate, and grown with a high density and uniformity on the substrate. Moreover, ZnO nanorods can be grown with an orientation along the -axis of the substrate and exhibit a wurtzite crystal structure with a dominant (002) peak in an XRD spectrum and possessed a high crystal quality. A photoluminescence (PL) spectroscopy study of the ZnO nanorods has revealed a conventional near band edge ultraviolet emission, along with emission in the visible part of the electromagnetic spectrum due to defect emission. This study provides an alternative method for the fabrication of well aligned ZnO nanorods. This method can be helpful in improving the performance of devices where alignment plays a significant role.
通过低温水相化学生长法,利用在淀粉和纤维素生物聚合物中制备的ZnO纳米颗粒生物复合种子层,制备了排列良好的ZnO纳米棒。研究了不同浓度的生物复合种子层对ZnO纳米棒排列的影响。采用X射线衍射(XRD)和场发射扫描电子显微镜(FESEM)技术对生长在镀金玻璃衬底上的ZnO纳米棒进行了表征。这些技术表明,ZnO纳米棒排列良好且垂直于衬底,在衬底上以高密度和均匀性生长。此外,ZnO纳米棒可以沿着衬底的轴方向生长,在XRD光谱中呈现出以(002)主峰为主的纤锌矿晶体结构,并且具有高质量的晶体。对ZnO纳米棒的光致发光(PL)光谱研究表明,除了由于缺陷发射导致的电磁光谱可见部分的发射外,还存在传统的近带边紫外发射。该研究为制备排列良好的ZnO纳米棒提供了一种替代方法。该方法有助于提高排列起重要作用的器件的性能。