Chen Y F, Wang R M, Zhang H Z, Sun X C, Zhang Z S, Xing Y J, Yu D P
Electron Microscopy Laboratory, State Key Laboratory for Mesoscopic Physics, School of Physics, Peking University, Beijing 100871, China.
Micron. 2004;35(6):481-7. doi: 10.1016/j.micron.2004.02.009.
Unusual ZnO nanostructures have been successfully synthesized via selenium-controlled chemical vapor phase growth on Si (111) substrates at about 500 degrees C. The microstructure and chemical compositional characteristics of the ZnO nanomaterials have been systematically investigated by means of analytical transmission electron microscopy (TEM), including energy-dispersive X-ray spectroscopy and electron energy-loss spectroscopy. Most of the nanostructures have a belt-like morphology with typical widths of approximately 150 nm and lengths up to several micrometers. All the investigated materials are found to be stoichiometric ZnO with a hexagonal crystal structure. The growth directions for the nanobelts are found to be [1010] and [2110] respectively. Regular-triangle and needle-like heads with diameters only approximately 25-35 nm have been found in the straight nanobelts. High-resolution TEM images indicate that all the nanostructures are single crystals and free of defects. The growth mechanisms of such interesting and unique morphologies are briefly discussed.
通过在约500摄氏度的温度下在硅(111)衬底上进行硒控制的化学气相生长,成功合成了异常的氧化锌纳米结构。利用分析透射电子显微镜(TEM),包括能量色散X射线光谱和电子能量损失光谱,系统地研究了氧化锌纳米材料的微观结构和化学成分特征。大多数纳米结构具有带状形态,典型宽度约为150纳米,长度可达几微米。所有研究的材料均为具有六方晶体结构的化学计量氧化锌。发现纳米带的生长方向分别为[1010]和[2110]。在直的纳米带中发现了直径仅约25 - 35纳米的正三角形和针状头部。高分辨率TEM图像表明,所有纳米结构都是单晶且无缺陷。简要讨论了这种有趣且独特形态的生长机制。