| Literature DB >> 25852382 |
Bing-Bing Xie1, Bin-Bin Hu1, Li-Fang Jiang1, Guo Li1, Zu-Liang Du1.
Abstract
In the present work, CuInS2 nanoparticles have been successfully synthesized by water-bath method with deionized water as solvent and thioglycolic acid as complexing agent at 80°C. The phase transition of CuInS2 from chalcopyrite to wurtzite was realized by adjusting the pH value of reaction solution. The emergence of Cu2S in the condition of higher pH value of reaction solution led to the formation of wurtzite CuInS2. This facile method that controls the phase structure by adjusting the solution pH value could open a new way to synthesize other I-III-VI2 ternary semiconductor compounds.Entities:
Keywords: Chalcopyrite; CuInS2; Wurtzite; pH
Year: 2015 PMID: 25852382 PMCID: PMC4385122 DOI: 10.1186/s11671-015-0800-z
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1XRD patterns of as-synthesized chalcopyrite and wurtzite CuInS . (a) Chalcopyrite. (b) Wurtzite. Insets show the corresponding crystal structures.
Figure 2The morphology of the chalcopyrite and wurtzite CuInS . (a, d) SEM image, (b, e) TEM image, (c, f) SAED pattern.
Figure 3XRD pattern of the as-synthesized CuInS nanoparticles prepared at different pH values.
Figure 4XRD patterns of the wurtzite CuInS annealed at different temperatures.
Figure 5The XPS spectra of wurtzite CuInS . (a) Survey spectrum, (b) Cu 2p, (c) In 3d, (d) S 2p.
Figure 6The UV-vis absorption spectrum of chalcopyrite and wurtzite CuInS . The insets show the bandgaps of the CuInS2.