ITMO
ru/ ru

ISSN: 1023-5086

ru/

ISSN: 1023-5086

Scientific and technical

Opticheskii Zhurnal

A full-text English translation of the journal is published by Optica Publishing Group under the title “Journal of Optical Technology”

Article submission Подать статью
Больше информации Back

УДК: 666-4:544.023

How the diffusion of sodium from a glass substrate affects the optical properties of composites

For Russian citation (Opticheskii Zhurnal):

Аткарская А.Б., Нарцев В.М., Прохоренков Д.С., Шеманин В.Г. Влияние диффузии натрия из стеклянной подложки на оптические свойства композитов // Оптический журнал. 2016. Т. 83. № 7. С. 15–19.

 

Atkarskaya A.B., Nartsev V.M., Prokhorenkov D.S., Shemanin V.G. How the diffusion of sodium from a glass substrate affects the optical properties of composites [in Russian] // Opticheskii Zhurnal. 2016. V. 83. № 7. P. 15–19.

For citation (Journal of Optical Technology):

A. B. Atkarskaya, V. M. Nartsev, D. S. Prokhorenkov, and V. G. Shemanin, "How the diffusion of sodium from a glass substrate affects the optical properties of composites," Journal of Optical Technology. 83(7), 400-404 (2016). https://doi.org/10.1364/JOT.83.000400

Abstract:

This paper discusses the optical properties of glass composites obtained by sol–gel technology. It is established that the thickness of the film deposited on a glass substrate depends on the sol concentration, its deposition rate, and the curing time. The concentration of sodium oxide that diffuses from the substrate into the coating decreases as the film becomes thicker, and the refractive index of the films decreases as the concentration of sodium oxide in them decreases.

Keywords:

film-forming sol, glass composite, sodium diffusion from substrate, optical properties of coatings and composites

Acknowledgements:

This work was carried out with the partial financial support of the basic part of the State Program of the Ministry of Education and Science of the Russian Federation, Project 2284, and of a grant of the Russian Foundation for Basic Research, Project No. 14-43-08049.

OCIS codes: 310.6860

References:

1. A. B. Atkarskaya, O. V. Mkrtychev, and V. G. Shemanin, “Refractive-index variation of nanosize films accompanying the modification of glass substrates,” Izv. Vyssh. Uchebn. Zaved. Fiz. 55(8), 238–239 (2012).
2. V. M. Nartsev, E. A. Doroganov, S. V. Zaĭtsev, N. V. Osipenko, and E. I. Evtushenko, “On the question of determining the characteristics of thin coatings based on titanium dioxide,” Ogneupory Tekh. Keram. (9), 31–36 (2011).
3. V. V. Vas’kevich, V. E. Gaĭshun, and D. L. Kovalenko, “Protective sol–gel coatings with hydrophobic properties,” Probl. Fiz. Matem. Tekh. (3), 5–9 (2011).
4. A. B. Atkarskaya, “The effect of the composition of sol–gel films on the diffusion of the components from a glass substrate,” Steklo Keram. (5), 9–11 (1998).
5. A. B. Atkarskaya, S. V. Karatsupa, V. M. Nartsev, S. V. Zaĭtsev, D. S. Prokhorenkov, and E. I. Evtushenko, “How the properties of glass composites with nanosize coatings depend on the parameters of their fabrication technology,” Steklo Keram. (10), 27–32 (2013).
6. B. Beckhoff, B. Kanngießer, N. Langhoff, R. Wedell, and H. Wolff, eds., Handbook of Practical X-Ray Fluorescence Analysis (Springer-Verlag, Berlin, 2006).
7. M. S. Ageeva, D. S. Prokhorenkov, V. S. Vashchilin, S. V. Zaĭtsev, V. M. Nartsev, and S. V. Karatsupa, “How the deposition conditions of high-quality AlN and SiC affect the coating characteristics,” Vestnik BGTU im. V. G. Shukhova (6), 168–172 (2013).
8. L. I. Demkina, ed., Physicochemical Principles of the Production of Optical Glass. A Collection of Articles (Khimiya, Leningrad, 1976).
9. P. G. Cheremskoĭ, V. V. Slezov, and V. I. Betekhtin, Pores in the Solid State (Énergoatomizdat, Moscow, 1990).
10. S. S. Voyutskiĭ, Course of Colloid Chemistry (Khimiya, Moscow, 1964).