Jie Jiansheng, Wang Guanzhong, Wang Qingtao, Chen Yiming, Han Xinhai, Wang Xiaoping, Hou J G
Hefei National Laboratory for Physical Sciences at Microscale, and Department of Physics, University of Science and Technology of China, Hefei 230026, China.
J Phys Chem B. 2004 Aug 12;108(32):11976-80. doi: 10.1021/jp048974r.
Aligned high-density ZnO nanorods were successfully synthesized on porous aluminum oxide (PAO) template. The growth process involves carbonthermal reduction of ZnO as a Zn vapor source and ZnO nucleation on the PAO template without metal catalysts. Field-emission scanning electron microscope images revealed that the nanorods have uniform length distributions and hexagon end planes, and the intense c-axis growth was also confirmed by X-ray diffraction. Strong ultraviolet emission at 380 nm and weak green band emission at 520 nm at room-temperature photoluminescence clearly indicated the high quality of the ZnO nanorods. A growth mechanism is proposed that the multipore surface of the PAO template plays a critical role in the nucleation of ZnO in the initial stage of growth, and nanorods grow from the nuclei due to intense ZnO c-axis orientation growth.
在多孔氧化铝(PAO)模板上成功合成了排列整齐的高密度氧化锌纳米棒。生长过程涉及将氧化锌进行碳热还原作为锌蒸气源,以及在没有金属催化剂的情况下氧化锌在PAO模板上成核。场发射扫描电子显微镜图像显示,纳米棒具有均匀的长度分布和六边形端面,X射线衍射也证实了其强烈的c轴生长。室温光致发光下在380 nm处的强紫外发射和在520 nm处的弱绿带发射清楚地表明了氧化锌纳米棒的高质量。提出了一种生长机制,即PAO模板的多孔隙表面在生长初始阶段氧化锌的成核中起关键作用,并且由于强烈的氧化锌c轴取向生长,纳米棒从核中生长出来。