Department of Chemistry, University of South Dakota, 414 East Clark Street, Vermillion, SD 57069, USA.
Nanotechnology. 2011 Jul 8;22(27):275712. doi: 10.1088/0957-4484/22/27/275712. Epub 2011 May 24.
Silver nanowires were synthesized with a green method and characterized with microscopic and diffractometric methods. The correlation between the colors of the nanowires deposited on a solid substrate and their diameters was explored. Silver nanowires that appear similar in color in the optical micrographs have very similar diameters as determined by atomic force microscopy. We have summarized the diameter-dependent coloration for these silver nanowires. An optical interference model was applied to explain such correlation. In addition, microreflectance spectra were obtained from individual nanowires and the observed spectra can be explained with the optical interference theory. This work provides a cheap, quick and simple screening method for studying the diameter distribution of silver nanowires, as well as the diameter variations of individual silver nanowires, without complicated sample preparation.
采用绿色方法合成了银纳米线,并通过微观和衍射方法对其进行了表征。研究了沉积在固体基底上的纳米线的颜色与其直径之间的相关性。原子力显微镜(AFM)确定,在光学显微镜下颜色相似的银纳米线具有非常相似的直径。我们总结了这些银纳米线的直径相关显色规律。应用光学干涉模型解释了这种相关性。此外,还从单个纳米线获得了微反射光谱,并且可以用光学干涉理论来解释所观察到的光谱。这项工作提供了一种廉价、快速和简单的筛选方法,用于研究银纳米线的直径分布以及单个银纳米线的直径变化,而无需复杂的样品制备。