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Nanosystems: Physics, Chemistry, Mathematics, 2019, Volume 10, Issue 6, Pages 654–665
DOI: https://doi.org/10.17586/2220-8054-2019-10-6-654-665
(Mi nano481)
 

This article is cited in 2 scientific papers (total in 2 papers)

CHEMISTRY AND MATERIAL SCIENCE

Phosphors with different morphology, formed under hydrothermal conditions on the basis of ZrO2:Eu$^{3+}$ nanocrystallites

A. N. Bugrovab, R. Yu. Smyslovac, T. V. Khamovad, D. A. Kirilenkoef, I. A. Rodionovg

a Institute of macromolecular compounds RAS, Bolshoy pr. 31, 199004 St. Petersburg, Russia
b Saint Petersburg Electrotechnical University “LETI”, ul. Professora Popova 5, 197376 St. Petersburg, Russia
c Peter the Great St. Petersburg Polytechnic University, Polytechnicheskaya 29, 195251 St. Petersburg, Russia
d Grebenshchikov Institute of Silicate Chemistry RAS, Makarova nab. 2., letter B, 199034 St Petersburg, Russia
e Ioffe Institute RAS, Politekhnicheskaya ul. 26, 194021 St. Petersburg, Russia
f ITMO University, Kronverskii avenue 49, 197101 St. Petersburg, Russia
g Institute of Chemistry, Saint Petersburg State University, Universitetskii prospect 26, Petergof, 198504 St. Petersburg, Russia
Full-text PDF (928 kB) Citations (2)
Abstract: Eu$^{3+}$-doped ZrO$_{2}$ nanostructures in the form of rods, stars, and hollow spheres were prepared by varying hydrothermal conditions. X-ray diffraction, transmission electron microscope, ultraviolet-visible diffuse reflection spectroscopy, low-temperature nitrogen adsorption method, Raman spectroscopy and photoluminescence spectra were used to characterize the polymorph modification, surface and optical properties of the Zr$_{0.98}$Eu$_{0.02}$O$_{2}$ nanophosphors. The Eu$^{3+}$ content in a zirconia monoclinic lattice, remained constant for all types of obtained nanostructures in order to reveal the morphology influence on the efficiency of electronic excitation energy transfer from the host matrix to photoactive centers. The decrease of average size of the coherent scattering regions in the series rods $\to$ stars $\to$ hollow spheres, is associated with increasing the specific surface area values. At that, in the photoluminescence spectrum, the splitting of the sublevels associated with the monoclinic lattice $^{5}$D$_{0}\to{}^{7}$F$_{1}$ disappears.
Keywords: hydrothermal synthesis, monoclinic zirconia, europium, solid solution, rods, stars, hollow spheres, nanocrystals, optical band gap, photoluminescence, fluorescence lifetime.
Funding agency Grant number
Russian Foundation for Basic Research 16-33-60227_мол_а_дк
EU Framework Programme for Research and Innovation 654360
Ministry of Education and Science of the Russian Federation RFMEFI62117X0018
Alexander N. Bugrov appreciates the Russian Foundation for Basic Research (grant No. 16-33-60227) for the financial support. Ruslan Smyslov is thankful for his funding received from the EU-H2020 research and innovation program under grant agreement No. 654360 having benefitted from the access provided by CEA/LETI in Grenoble within the framework of the NFFA-Europe Transnational Access Activity. X-ray diffraction experiments were performed on the Engineering Center equipment of the St. Petersburg State Technological Institute (Technical University). TEM studies were carried out in the Federal Joint Research Center “Material science and characterization in advanced technology” funded by the Ministry of Education and Science of the Russian Federation (id RFMEFI62117X0018).
Received: 17.06.2019
Bibliographic databases:
Document Type: Article
PACS: 78.67. n; 78.67.Bf
Language: English
Citation: A. N. Bugrov, R. Yu. Smyslov, T. V. Khamova, D. A. Kirilenko, I. A. Rodionov, “Phosphors with different morphology, formed under hydrothermal conditions on the basis of ZrO2:Eu$^{3+}$ nanocrystallites”, Nanosystems: Physics, Chemistry, Mathematics, 10:6 (2019), 654–665
Citation in format AMSBIB
\Bibitem{BugSmyKha19}
\by A.~N.~Bugrov, R.~Yu.~Smyslov, T.~V.~Khamova, D.~A.~Kirilenko, I.~A.~Rodionov
\paper Phosphors with different morphology, formed under hydrothermal conditions
on the basis of ZrO2:Eu$^{3+}$ nanocrystallites
\jour Nanosystems: Physics, Chemistry, Mathematics
\yr 2019
\vol 10
\issue 6
\pages 654--665
\mathnet{http://mi.mathnet.ru/nano481}
\crossref{https://doi.org/10.17586/2220-8054-2019-10-6-654-665}
\isi{https://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcApp=Publons&SrcAuth=Publons_CEL&DestLinkType=FullRecord&DestApp=WOS_CPL&KeyUT=000504855900008}
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  • This publication is cited in the following 2 articles:
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    Nanosystems: Physics, Chemistry, Mathematics
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