Fan Libo, Song Hongwei, Zhao Haifeng, Pan Guohui, Yu Hongquan, Bai Xue, Li Suwen, Lei Yanqiang, Dai Qilin, Qin Ruifei, Wang Tie, Dong Biao, Zheng Zhuhong, Ren Xinguang
Key Laboratory of Excited-State Physics, Changchun Institute of Optics, Fine Mechanics, and Physics, Chinese Academy of Sciences, 16 Eastern South-Lake Road, Changchun 130033, P. R. China.
J Phys Chem B. 2006 Jul 6;110(26):12948-53. doi: 10.1021/jp0604589.
An inorganic-organic hybrid semiconductor, ZnS/CHA (CHA = cyclohexylamine) nanocomposites was successfully synthesized via a solvothermal method using CHA as solvent, which yielded uniform and ultralong nanowires with widths of 100-1000 nm and lengths of 5-20 microm. Changing the reaction conditions could alter the morphology and optical properties of the nanocomposites. The periodic layer subnanometer structures were identified by high-resolution transmission electron microscopy (HR-TEM) images, with thickness of approximately 2 nm. The composites exhibited a very large blue-shift in their optical absorption edge as well as an exciton excitation band due to a strong quantum confinement effect caused by the internal subnanometer-scale structures. The pure hexagonal wurtzite ZnS nanowires were also obtained by extracting the ZnS/CHA nanocomposites with dimethyl formamide (DMF). In addition, the luminescent properties of exciton and defect-related transitions in different samples of ZnS/CHA were discussed in detail.
通过以环己胺(CHA)为溶剂的溶剂热法成功合成了一种无机-有机杂化半导体ZnS/CHA(CHA = 环己胺)纳米复合材料,该方法制备出了宽度为100 - 1000 nm、长度为5 - 20微米的均匀超长纳米线。改变反应条件可以改变纳米复合材料的形态和光学性质。通过高分辨率透射电子显微镜(HR-TEM)图像确定了周期性层状亚纳米结构,其厚度约为2 nm。由于内部亚纳米尺度结构引起的强量子限域效应,该复合材料在其光吸收边缘以及激子激发带表现出非常大的蓝移。通过用二甲基甲酰胺(DMF)萃取ZnS/CHA纳米复合材料,也获得了纯六方纤锌矿ZnS纳米线。此外,还详细讨论了不同ZnS/CHA样品中激子和缺陷相关跃迁的发光特性。