Please use this identifier to cite or link to this item: https://dspace.ncfu.ru/handle/20.500.12258/3168
Title: The influence of annealing temperature on photoluminescence of nanorods of zinc oxide
Authors: Skomorokhov, A. A.
Скоморохов, А. А.
Chapura, O. V.
Чапура, О. В.
Bondarenko, E. A.
Бондаренко, Е. А.
Mikhnev, L. V.
Михнев, Л. В.
Keywords: Annealing temperature;Bulk point defects;Electron microscopy;Photoluminescence;UV luminescence
Issue Date: 2016
Publisher: International Journal of Pharmacy and Technology
Citation: Skomorokhov, A.A., Chapura, O.V., Bondarenko, E.A., Mikhnev, L.V., Bondarenko, S.A. The influence of annealing temperature on photoluminescence of nanorods of Zinc Oxide // International Journal of Pharmacy and Technology. - 2016. - Volume 8. - Issue 4. - Pages 27406-27412
Series/Report no.: International Journal of Pharmacy and Technology
Abstract: A research method of photoluminescence has shown that the annealing temperature of the nanorods of zinc oxide has a great influence on the luminescence, which is associated with exciton and recombination mechanisms. The intensity of luminescence in the UV region increases with the increasing of treatment temperature to 400°C by reducing the concentration of surface and bulk point defects. The dependence of the luminescence intensity on the annealing temperature in the visible region is more complicated due to the specific dependence of the concentration of defects and their complexes involved in the radiative and non radiative processes, because of the temperature of processing
URI: https://www.scopus.com/record/display.uri?eid=2-s2.0-85018201569&origin=resultslist&sort=plf-f&src=s&nlo=&nlr=&nls=&sid=2d4e826478140d99650a215e37019390&sot=aff&sdt=cl&cluster=scopubyr%2c%222016%22%2ct&sl=174&s=AF-ID%28%22North+Caucasus+Federal+University%22+60070541%29+OR+AF-ID%28%22Stavropol+State+University%22+60070961%29+OR+AF-ID%28%22stavropolskij+Gosudarstvennyj+Tehniceskij+Universitet%22+60026323%29&relpos=6&citeCnt=0&searchTerm=
http://hdl.handle.net/20.500.12258/3168
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