Please use this identifier to cite or link to this item: https://dspace.uzhnu.edu.ua/jspui/handle/lib/34014
Title: Synthesis of aluminum oxide nanoparticles in overstressed nanosecond discharge plasma with the ectonic sputtering mechanism of aluminum electrodes
Authors: Shuaibov, Alexander
Minya, Alexander
Malinina, Antonina
Malinin, Alexander
Gomoki, Zoltan
Keywords: Luminescence, Nanostructures, Aluminum oxide, Nanosecond overstressed discharge, Argon, Air
Issue Date: 27-Jul-2020
Publisher: Highlights in BioScience
Citation: July 2020, Volume 3
Abstract: The results of studying the conditions of synthesis and luminescence of aluminum oxide nanoparticles in a plasma of an overstressed nanosecond discharge ignited between aluminum electrodes at an interelectrode distance of 2 mm and air pressure in the range of 50-202 kPa are presented. It was shown that the plasma of the investigated discharge is characterized by a wide luminescence band in the spectral range of 300–430 nm, which is associated with the formation of F and F + centers. The research results can be used in micro-nanotechnology, biomedical engineering to obtain nanostructured alumina substrates, on which other nanodevices and films from biomaterials can be placed. The aim of the work was to establish the possibility of detecting small nanoparticles - aluminum oxide nuclei by emission spectroscopy methods and the synthesis of nanostructured alumina films under atmospheric conditions (without the use of vacuum technology) over a large area.
Type: Text
Publication type: Стаття
URI: https://dspace.uzhnu.edu.ua/jspui/handle/lib/34014
ISSN: 2682-4043
Appears in Collections:Наукові публікації кафедри квантової електроніки

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