Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Synthesis and characterization of ZnS:Co nanoparticles prepared through wet chemical method
Homogeneous ZnS–Co-doped nanoparticles (ZnS:Co) were accomplished through wet chemical method with the aid of a buffer solution at room temperature. Based on theoretical calculations, the pH of the reaction and the type of buffer solution were determined. The results of X-ray diffraction analysis showed that the change of lattice constant in ZnS:Co can be detected with a change of Co concentration. The average size of ZnS nanocrystallites, estimated by the Debye–Sherrer formula, was about 3 nm. Also, optical and magnetic properties were tested with the ZnS:Co nanoparticles in various Co concentrations.
Synthesis and characterization of ZnS:Co nanoparticles prepared through wet chemical method
Homogeneous ZnS–Co-doped nanoparticles (ZnS:Co) were accomplished through wet chemical method with the aid of a buffer solution at room temperature. Based on theoretical calculations, the pH of the reaction and the type of buffer solution were determined. The results of X-ray diffraction analysis showed that the change of lattice constant in ZnS:Co can be detected with a change of Co concentration. The average size of ZnS nanocrystallites, estimated by the Debye–Sherrer formula, was about 3 nm. Also, optical and magnetic properties were tested with the ZnS:Co nanoparticles in various Co concentrations.
Synthesis and characterization of ZnS:Co nanoparticles prepared through wet chemical method
Le, Minh Tung (Autor:in) / Lee, Jaeryeong (Autor:in)
Geosystem Engineering ; 16 ; 231-235
01.09.2013
5 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
Synthesis and characterization of ZnO nanoparticles prepared in gelatin media
British Library Online Contents | 2011
|British Library Online Contents | 2016
|British Library Online Contents | 2016
|British Library Online Contents | 2016
|Synthesis and characterization of carbon spheres prepared by chemical vapour deposition
British Library Online Contents | 2007
|