Hsiao Chi-Sheng, Chen San-Yuan, Kuo Wan-Lin, Lin Chin-Ching, Cheng Syh-Yuh
Department of Materials Sciences and Engineering, National Chiao Tung University, Hsinchu, Taiwan.
Nanotechnology. 2008 Oct 8;19(40):405608. doi: 10.1088/0957-4484/19/40/405608. Epub 2008 Aug 21.
A simple chemical solution process was used to prepare alumina nanoparticle-coated ZnO nanotubes (ANZTs). Transmission electron microscope (TEM) images proved that the alumina nanoparticles were uniformly dispersed on the ZnO nanotubes. After thermal treatment at different temperatures under various atmospheres, photoluminescence (PL) measurements showed that the ANZTs emitted a variety of colors, including blue, green and white light. Gaussian curve fitting of the PL spectra revealed that the competition between the blue, blue-green, green and yellow band emissions and their relative emission intensities were strongly associated with various defects. Blue emission was attributed to large numbers of oxygen defects in alumina, while green and yellow emissions were related to oxygen and zinc defects in ZnO, respectively. Under specific conditions, white light, consisting of blue, blue-green, green and yellow band emissions, was obtained. Further TEM analysis indicated that the defect structure of ANZTs could be manipulated by the interface interaction between alumina and the ZnO nanotubes.
采用一种简单的化学溶液法制备了氧化铝纳米颗粒包覆的氧化锌纳米管(ANZTs)。透射电子显微镜(TEM)图像证明氧化铝纳米颗粒均匀地分散在氧化锌纳米管上。在不同温度和各种气氛下进行热处理后,光致发光(PL)测量表明,ANZTs发出多种颜色的光,包括蓝光、绿光和白光。PL光谱的高斯曲线拟合表明,蓝光、蓝绿光、绿光和黄光发射之间的竞争及其相对发射强度与各种缺陷密切相关。蓝光发射归因于氧化铝中大量的氧缺陷,而绿光和黄光发射分别与氧化锌中的氧和锌缺陷有关。在特定条件下,获得了由蓝光、蓝绿光、绿光和黄光发射组成的白光。进一步的TEM分析表明,ANZTs的缺陷结构可以通过氧化铝与氧化锌纳米管之间的界面相互作用来调控。