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Заглавие документа: Nonstoichiometric tin oxide films: study by X-ray diffraction, Raman scattering and electron paramagnetic resonance
Другое заглавие: Nestechiometrinės alavo oksido plėvelės rentgeno spindulių difrakcijos, Ramano sklaidos ir elektronų paramagnetinio rezonanso tyrimas
Авторы: Adamchuk, D. V.
Ksenevich, V. K.
Poklonski, N. A.
Navickas, M.
Banys, J.
Тема: ЭБ БГУ::ЕСТЕСТВЕННЫЕ И ТОЧНЫЕ НАУКИ::Физика
Дата публикации: 2019
Издатель: Lithuanian Academy of Sciences
Библиографическое описание источника: Lithuanian Journal of Physics. – 2019. – Vol. 59, № 4. – P. 179–185.
Аннотация: Nonstoichiometric SnO/SnO_2/SnO_2−δ films were fabricated by DC magnetron sputtering and reactive DC magnetron sputtering of tin target with further 2-stage temperature annealing of synthesized materials. X-ray diffraction analysis, Raman spectroscopy and electron paramagnetic resonance (EPR) spectroscopy were employed to study the influence of oxygen content in the plasma during the sputtering process and the temperature of annealing on the stoichiometric and phase composition of synthesized films. It was found that the tin monoxide phase prevailed in the films fabricated by DC magnetron sputtering in the argon plasma followed by a 2-stage annealing process. Nanocrystalline films containing both tin monoxide and tin dioxide were synthesized when reactive magnetron sputtering with a small content of oxygen (of about 1 vol.%) was used. The increase of oxygen content in the plasma to the value of about 2 vol.% leads to the formation of amorphous films. The intensity of the Raman peaks inherent in SnO_2 vibration modes was found to depend on the content of the tin monoxide phase in the films. This effect can be attributed to the dissipative transition of electronic excitation from tin monoxide to tin dioxide nanocrystallites.
URI документа: http://elib.bsu.by/handle/123456789/236915
ISSN: 1648-8504 (Print)
2424-3647 (Online)
DOI документа: 10.3952/physics.v59i4.4138
Scopus идентификатор документа: 85078514604
Финансовая поддержка: The work was supported by the State Committee on Science and Technology of the Republic of Belarus (Grant No. F19LITG-001), Research Council of Lithuania (Grant No. S-LB-19-5), Belarusian National Research Program ‘Convergence-2020’ (subprogram ‘Integration’, Grant No. 3.3.1), and by Program of EU H2020-MSCA-RISE-2015 (Grants No. 691010 HUNTER and No. 690968 NANOGUARD2Ar).
Располагается в коллекциях:Кафедра физики полупроводников и наноэлектроники (статьи)

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