Liu Bin, Zeng Hua Chun
Department of Chemical and Environmental Engineering, Faculty of Engineering, National University of Singapore, 10 Kent Ridge Crescent, Singapore 119260.
Langmuir. 2004 May 11;20(10):4196-204. doi: 10.1021/la035264o.
In this work, we report a room temperature wet-chemical approach to synthesize highly regulated, monodispersed ZnO nanorods and derived hierarchical nanostructures. In particular, ZnO has been prepared into single-crystalline conical or prismatic nanorods, and various hierarchical structures such as hexagonally branched, reversed umbrella-type, and cactus-like ZnO nanostructures comprising individual c-oriented nanorods. Depending on the synthetic conditions used, the diameter of nanorods can be controlled with a size down to 10-30 nm, while the aspect ratio can be controlled up to 50-100. Various preparative parameters, such as initial reactant concentrations, solvents, ligands, surfactants, precursor salts, and reaction time, have been systematically examined. Due to slow reactions at room temperature, excellent crystallinity and high morphological yield (100% in most cases) have been achieved via tuning the synthetic parameters. Our photoluminescence and UV measurements also confirm the attained crystal perfection and size uniformity.
在本工作中,我们报道了一种室温湿化学方法来合成高度规整、单分散的ZnO纳米棒及其衍生的分级纳米结构。具体而言,ZnO已被制备成单晶锥形或棱柱形纳米棒,以及各种分级结构,如由单个c轴取向纳米棒组成的六边形分支、倒伞型和仙人掌状ZnO纳米结构。根据所使用的合成条件,纳米棒的直径可控制至低至10 - 30 nm,而纵横比可控制高达50 - 100。已系统研究了各种制备参数,如初始反应物浓度、溶剂、配体、表面活性剂、前驱体盐和反应时间。由于室温下反应缓慢,通过调整合成参数实现了优异的结晶度和高形态产率(大多数情况下为100%)。我们的光致发光和紫外测量也证实了所获得的晶体完美度和尺寸均匀性。