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Sol-gel technology prospects for nanophotonics and microelectronics

Abstract

The results of synthesis and investigation of the film structures, prepared with the sol-gel method in BSUIR, are summarized. The peculiarities of synthesis and optical properties xerogels doped with lanthanides in matrices with macro- and mesoporous silicon, porous anodic alumina and synthetic opals are discussed. The possibilities of application the xerogel films for the structures of nanophotonics and microelectronics on the basis of results of PhD theses, defended within the projects of laboratory 4.5 «Nanophotonics» at BSUIR are discussed.

About the Author

N. V. Gaponenko
Belarusian state university of informatics and radioelectronics
Belarus

Gaponenko Nikolay Vasilyevich - D.Sci, professor, head of SRL 4.5 R&D department

220013, Republic of Belarus, Minsk, P. Brovka st., 6

tel. +375-17-293-88-75



References

1. Hench L.L., West J.K. The sol-gel process // Chem. Rev. 1990. Vol. 90. P. 33–72.

2. Borisenko V.E. Tverdofaznye processy v poluprovodnikah pri impul'snom nagreve. Minsk: Navuka і tjehnіka, 1992. 248 s. (in Russ.)

3. Gaponenko N.V. Plenki, sformirovannye zol'-gel' metodom na poluprovodnikah i v mezoporistyh matricah. Minsk: Bel. nauka, 2003. 136 s. (in Russ.)

4. Gaponenko N.V. Sol-gel derived films in mesoporous matrices: porous silicon, anodic alumina and artificial opals // Synthetic Metals. 2001. Vol. 124, No. 1. P. 15–2130.

5. Gaponenko N.V. Synthesis and optical properties of sol-gel films in mesoporous matrices // J. Appl. Spectroscopy. 2002. Vol. 69, No. 1. P. 1–17.

6. Gaponenko N.V. Luminescence of lanthanides from xerogels embedded in mesoporous matrices // Acta Physica Polonica. 2007. Vol.112. P. 737 – 749.

7. Lyuminestsentsiya erbiya v poroshkah (Y, Er, Yb)3 Al5O12 / L.S. Horoshko [et al.] // Opticheskiy zhurnal. 2019. Vol. 86, No. 2. P. 74–78.

8. Erbium luminescence in porous silicon doped from spin-on films / A.M. Dorofeev [et al.] // J. Appl. Phys. 1995. Vol. 77, No. 6. P. 2679–2683.

9. Enhancement of green terbium-related photoluminescence from highly doped microporous alumina xerogels in mesoporous anodic alumina / N.V. Gaponenko [et al.] // J. Electrochem. Soc. 2002. Vol. 149, No. 2. P. H49–H52.

10. Erbium and terbium photoluminescence in silica sol-gel films on porous alumina / N.V. Gaponenko [et al.] // Thin Solid Films. 1997. Vol. 297, No. 1–2. P. 202–206.

11. Inhomogeneous nanostructured honeycomb optical media for enhanced cathodo- and under-x-ray luminescence / N.V. Gaponenko [et al.] // J. of Applied Physics. 2012. Vol. 111. P. 103101–103107.

12. Infrared photoluminescence from erbium-doped porous silicon / W. Henley [et al.] // J. Appl. Phys. 2000. Vol. 87, No. 11. P. 7848–7852.

13. Comparison of terbium photoluminescence from ion implanted and so-gel-derived films / J.C. Pivin [et al.] // J. Alloys Comp. 2002. Vol. 341. P. 272–274.

14. Anisotropic light scattering in nanoporous materials: a photon density of states effect / N.V. Gaponenko [et al.] // Nano Lett. 2004. Vol. 4, No. 9. P. 1755–1758.

15. Photonic stop band in a three-dimensional SiO 2/TiO 2 lattice / N.V. Gaponenko [et al.] // Phys. Stat. Sol. A. 1998. Vol. 165. P. 119–122.

16. Modification of erbium photoluminescence excitation spectra for the emission wavelength 1.54 µm in mesoscopic structures / N.V. Gaponenko [et al.] // J. of Luminescence. 2006. Vol. 121. P. 217–221.

17. Optical properties of multilayer BaTiO3/SiO 2 film structures formed by the sol–gel method / N.V. Gaponenko [et al.] // Physics of the Solid State . 2019. Vol. 61, No. 3. P. 397–401.

18. Low-resistance and high-resistance states in strontium titanate films formed by the sol-gel method / H. Sohrabi Anaraki [et al.] // Physics of the Solid State. 2015. Vol. 57, No. 10. P. 2030–2033.

19. Room-temperature tunable Properties of strontium titanate nanostructured films / H. Sohrabi Anaraki [et al.] // Physics, Chemistry and Application of Nanostructures : proceedings of the Intern. conf. «Nanomeeting-2015». Minsk, 26–29 May 2015. P. 362–364.

20. Kondensatornye struktury na osnove plenok titanata stroncija, sformirovannyh zol'-gel' metodom I magnetronnym raspyleniem / P.A. Holov [i dr.] // Materialy 9-j Mezhdunar. nauchn.-prakt. konf. po fizike i tehnologii nanogeterostrukturnoj SVCh-jelektroniki «Mokerovskie chtenija–2018». Moskva, 23 maja 2018 g. S. 136–137. (in Russ.)

21. Asharif A.M. Plenochnye struktury iz nanoporistogo anodnogo oksida aljuminija, soderzhashhie dioksid titana i aljumoittrievye perovskity, sintezirovannye iz rastvornyh kompozicij: avtoref. dis. ... kand. tehn. nauk. Minsk, 2015. (in Russ.)

22. Sohrabi A.H. Zol'-gel' sintez plenok titana stroncija dlja ispol'zovanija v kondensatorah i memristorah v kremnievoj jelektronike: avtoref. dis. ... kand. fiz.-mat. nauk. Minsk, 2016. (in Russ.)

23. Horoshko L.S. Sintez i ljuminescentnye svojstva nanostrukturirovannyh aljumoittrievyh kompozitov, legirovannyh terbiem: avtoref. dis. ... kand. fiz.-mat. nauk. Minsk, 2018. (in Russ.)


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For citations:


Gaponenko N.V. Sol-gel technology prospects for nanophotonics and microelectronics. Doklady BGUIR. 2019;(3):37-41. (In Russ.)

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