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机构地区:[1]辽河油田石油勘探局物资公司机电仪表公司,辽宁盘锦124011 [2]长春理工大学物理学院,吉林长春130022
出 处:《液晶与显示》2008年第6期658-662,共5页Chinese Journal of Liquid Crystals and Displays
基 金:National Natural Science Foundation of China(No.10647105,No.60676059);Key Project of National Natural Science Foundation of China(No.60336020,No.50532050);"973"Program(No.2006CB604906);CAS Innovation Program,the National Natural Science Foundation of China(No.60429403,No.60506014,No.50402016,No.10674133)
摘 要:采用电化学方法在磁控溅射方法生长的ZnO薄膜上生长垂直于衬底排列的ZnO纳米柱。ZnO薄膜的作用主要是为ZnO纳米柱的生长提供同质外延层。电化学生长的ZnO纳米柱具有良好的晶体质量和发光性能。通过研究其变温发光光谱可以确定其紫外发光峰来自于带边激子的辐射复合。此种方法生长的ZnO纳米柱在场发射显示、蓝紫色和白光发光二极管方面有潜在的应用前景。Vertically aligned ZnO nanorods were electrodeposited on the ZnO thin films grown by magnetron sputtering. The ZnO thin films were served as a homoepitaxy layer for the growth of ZnO nanorods. The rods were perfectly oriented in a vertical direction and there were no side branches. The ZnO nanorods grown on ZnO thin films have a good crystal quality with a low defect concentration and greatly improve the photoluminescence property of the thin films. The redshift of the peak energy with rising temperature in temperature-dependent photoluminescence spectrum for the UV emission proved its excitonie origin.
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