Université de Lorraine, Institut Jean Lamour, UMR CNRS 7198, NANCY, F-54011, France.
Nanotechnology. 2017 Feb 24;28(8):085602. doi: 10.1088/1361-6528/28/8/085602. Epub 2017 Jan 19.
The synthesis of ultrathin, single-crystalline zinc oxide nanowires was achieved by treating in a flowing microwave plasma oxidation process, zinc films coated beforehand by a sputtered thin buffer layer of copper. The aspect ratio of the nanowires can be controlled by the following experimental parameters: treatment duration, furnace temperature, oxygen concentration. An average diameter of 6 nm correlated with a mean length of 750 nm can be reached with a fairly high surface number density for very short treatments, typically less than 1 min. The oxidized samples are characterized by means of SEM, XRD, SIMS, HRTEM and EDX techniques. Structural characterization reveals that these nanowires are single-crystalline, with the wurtzite phase of ZnO. Nanowires are only composed of ZnO without copper particles inside or at the end of the nanowires. Temperature-dependent photoluminescence measurements confirm that ZnO nanowires are of high crystalline quality and thin enough to produce quantum confinement.
通过在流动微波等离子体氧化过程中处理预先涂覆有溅射薄铜缓冲层的锌膜,实现了超薄单晶氧化锌纳米线的合成。纳米线的纵横比可以通过以下实验参数来控制:处理时间、炉温、氧气浓度。在非常短的处理时间(通常小于 1 分钟)下,可以达到 6nm 的平均直径和 750nm 的平均长度,并且具有非常高的表面数密度。用 SEM、XRD、SIMS、HRTEM 和 EDX 技术对氧化后的样品进行了表征。结构表征表明,这些纳米线是单晶的,具有 ZnO 的纤锌矿相。纳米线仅由 ZnO 组成,内部或纳米线末端没有铜颗粒。温度依赖的光致发光测量证实,氧化锌纳米线具有高晶体质量和足够薄的厚度,可以产生量子限制。