ZnO-based nanorods synthesised by sol-gel method
Problemy fiziki, matematiki i tehniki, no. 3 (2017), pp. 28-31.

Voir la notice de l'article provenant de la source Math-Net.Ru

The liquid-phase method for obtaining ZnO nanostructures is presented. To form nanorods of zinc oxide, substrates with the seed coat were used. The influence of synthesis conditions and modifying substances on the morphology of ZnO nanorods was studied.
Keywords: zinc oxide, sol-gel method, seed layer, hydrothermal synthesis, nanorods.
@article{PFMT_2017_3_a3,
     author = {A. V. Semchenko and D. L. Kovalenko and V. V. Sidsky and O. I. Tyulenkova and N. I. Tyulenkova and V. A. Solodukha and A. N. Pyatlitski and N. S. Koval'chuk},
     title = {ZnO-based nanorods synthesised by sol-gel method},
     journal = {Problemy fiziki, matematiki i tehniki},
     pages = {28--31},
     publisher = {mathdoc},
     number = {3},
     year = {2017},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/PFMT_2017_3_a3/}
}
TY  - JOUR
AU  - A. V. Semchenko
AU  - D. L. Kovalenko
AU  - V. V. Sidsky
AU  - O. I. Tyulenkova
AU  - N. I. Tyulenkova
AU  - V. A. Solodukha
AU  - A. N. Pyatlitski
AU  - N. S. Koval'chuk
TI  - ZnO-based nanorods synthesised by sol-gel method
JO  - Problemy fiziki, matematiki i tehniki
PY  - 2017
SP  - 28
EP  - 31
IS  - 3
PB  - mathdoc
UR  - http://geodesic.mathdoc.fr/item/PFMT_2017_3_a3/
LA  - ru
ID  - PFMT_2017_3_a3
ER  - 
%0 Journal Article
%A A. V. Semchenko
%A D. L. Kovalenko
%A V. V. Sidsky
%A O. I. Tyulenkova
%A N. I. Tyulenkova
%A V. A. Solodukha
%A A. N. Pyatlitski
%A N. S. Koval'chuk
%T ZnO-based nanorods synthesised by sol-gel method
%J Problemy fiziki, matematiki i tehniki
%D 2017
%P 28-31
%N 3
%I mathdoc
%U http://geodesic.mathdoc.fr/item/PFMT_2017_3_a3/
%G ru
%F PFMT_2017_3_a3
A. V. Semchenko; D. L. Kovalenko; V. V. Sidsky; O. I. Tyulenkova; N. I. Tyulenkova; V. A. Solodukha; A. N. Pyatlitski; N. S. Koval'chuk. ZnO-based nanorods synthesised by sol-gel method. Problemy fiziki, matematiki i tehniki, no. 3 (2017), pp. 28-31. http://geodesic.mathdoc.fr/item/PFMT_2017_3_a3/

[1] C. F. Klingshirn et al., Zinc oxide from fundamental properties towards novel applications, Springer-Verlag, Berlin–Heidelberg, 2010, 359 pp.

[2] A. I. Borisenko i dr., Tonkie neorganicheskie plenki v mikroelektronike, Nauka, L., 1972, 114 pp.

[3] L. Jing, Z. Xu, “The preparation and characterization of ZnO ultrafine particles”, Materials Science and Engineering, 332 (2002), 356–361 | DOI

[4] B. D. Yao, Y. F. Chan, N. Wang, “Formation of ZnO nanostructures by a simple way of thermal evaporation”, Appl. Phys. Lett., 81 (2002), 757–759 | DOI

[5] V. A. Zhabrev i dr., Zol-gel tekhnologiya, Uchebnoe posobie dlya vuzov, «LETI», SPb., 2004, 294 pp.

[6] A. I. Maksimov, V. A. Moshnikov, Yu. M. Tairov, O. A. Shilova, Osnovy zol-gel tekhnologii nanokompozitov, Monografiya, 2-e izd., perer., «LETI», SPb., 2007, 255 pp.

[7] S. Baruah, J. Dutta, “pH-dependent growth of zinc oxide nanorods”, Journal of Crystal Growth, 311 (2009), 2549–2554 | DOI