Authors | N.B. Danilevskaya1, N.V. Moroz2, B.D. Nechyporuk1 , B.P. Rudyk2 |
Affiliations |
1 Rivne State Humanitarian University, 31, Ostafova St., 33000 Rivne, Ukraine 2 National University of Water Management and Nature Resources Use, 11, Soborna Str., 33028 Rivne, Ukraine |
Е-mail | rexismundi@gmail.com |
Issue | Volume 8, Year 2016, Number 1 |
Dates | Received 30 December 2015; revised manuscript received 04 March 2016; published online 15 March 2016 |
Citation | N.B. Danilevskaya, N.V. Moroz, B.D. Nechyporuk, B.P. Rudyk, J. Nano- Electron. Phys. 8 No 1, 01006 (2016) |
DOI | 10.21272/jnep.8(1).01006 |
PACS Number(s) | 61.05Cp, 61.46Hk, 62.25. – g, 78.40Fy |
Keywords | Zinc sulfide, Zinc oxide (10) , Nanoparticles (70) , X-ray analysis (2) , Dimensioning. |
Annotation |
The possibility of obtaining zinc oxide and sulfide nanocrystals by electrolytic method using sodium thiosulfate solution as the electrolyte is given. Received samples were examined by methods of X-ray diffraction analysis and absorption spectrometry. The size of nanoparticles is defined by Williamson-Hall and Debye-Scherrer methods. Found that the nanocrystals data of substances are in tension, which affect the value of the broadening of x-ray peaks. |
List of References |