Institute for Chemistry and Technology of Materials, Graz University of Technology, Stremayrgasse 9, 8010 Graz, Austria.
Inorg Chem. 2011 Jan 3;50(1):193-200. doi: 10.1021/ic101651p. Epub 2010 Dec 8.
The formation of copper indium disulfide nanoparticles via the oleylamine route using copper iodide, indium chloride, and elemental sulfur has been investigated by applying conventional thermal heating as well as microwave irradiation. Oleylamine thereby acts as a capping ligand as well as a solvent. In an initial set of experiments, the onset of the reaction was determined to be around 115 °C by an in situ X-ray study using Synchrotron radiation. Using comparatively low synthesis temperatures of 120 °C, it is already possible to obtain nanoparticles of 2-4 nm with both heating methods but with irregular shape and size distribution. By applying higher temperatures of 220 °C, more crystalline and larger nanoparticles were obtained with slight differences in crystallite size and size distribution depending on the synthesis route. The size of the nanoparticles is in the range of 3-10 nm depending on the heating time. Using microwave irradiation, it is possible to obtain nanoparticles in only 90 s of total synthesis time. Control experiments to probe a nonthermal microwave effect were carried out ensuring an identical experimental setup, including the heating profile, the stirring rate, and the volume and concentration of the solutions. These experiments clearly demonstrate that for the preparation of CuInS(2) nanoparticles described herein no differences between conventional and microwave heating could be observed when performed at the same temperature. The nanoparticles obtained by microwave and thermal methods have the same crystal phase, primary crystallite size, shape, and size distribution. In addition, they show no significant differences concerning their optical properties.
通过使用碘化铜、氯化铟和元素硫,通过十八胺路线合成了铜铟二硫化物纳米粒子,采用常规热加热和微波辐射。十八胺因此既作为封端配体又作为溶剂。在一组初步实验中,通过使用同步辐射的原位 X 射线研究确定反应的起始温度约为 115°C。使用相对较低的 120°C 合成温度,两种加热方法都可以获得 2-4nm 的纳米粒子,但形状不规则且尺寸分布不均匀。通过应用 220°C 的较高温度,可以获得更结晶和更大的纳米粒子,结晶粒度和尺寸分布略有差异,具体取决于合成路线。纳米粒子的尺寸范围为 3-10nm,具体取决于加热时间。使用微波辐射,仅需 90 秒的总合成时间即可获得纳米粒子。进行了控制实验以探测非热微波效应,确保实验装置相同,包括加热曲线、搅拌速度以及溶液的体积和浓度。这些实验清楚地表明,对于本文所述的 CuInS(2)纳米粒子的制备,当在相同温度下进行时,常规加热和微波加热之间没有差异。通过微波和热方法获得的纳米粒子具有相同的晶体相、初级晶粒尺寸、形状和尺寸分布。此外,它们在光学性质方面没有明显差异。