Habit, Symmetry and Orientation of Surface Structures Vapor - Phase Condensation SnTe:Bi on Ceramics
DOI:
https://doi.org/10.15330/pcss.17.1.65-69Keywords:
stanelium teluride, vapor condensation, orientation, surface objectsAbstract
The analysis was obtained by atomic force microscopy method of topograms nanostructures on the surface of vapor-phase condensation of SnTe: Bi, thet were opened deposited by evaporation in a vacuum on substrates of ceramics. With the distribution of polar and azimuthal angles of the normal vector to the surface elements of condensate was found objects with flat faces with by dominant orientation in space and by symmetry.
References
[1] V. M. Shperun, D. M. Freyik, V. V. Prokopiv, SnTe. Physical-Chemical Properties (Play, Ivano-Frankivs'k, 2002).
[2] D. M. Freyik, Ya. S. Yavors'kyy, I. I. Chav"yak, V. I. Makovyshyn, O. M. Matkivs'kyy, R. Ya. Yaremkiv. Napivprovidnykovi materialy, informatsiyni tekhnolohiyi ta fotovol'tayika (Kremenchuk, 2014). C. 106.
[3] R. D. Venhrenovych, B. V. Ivans'kyy, A. V. Moskalyuk. Physics and Chemistry of Solid State, 10(1). 19, (2009).
[4] M. O. Galushcak, D. M. Freik, I. M. Ivanyshyn, A. V. Lysak, M. V. Pyts, Journal of Thermoelectricity, 1, 43 (2000).
[5] V. L. Kuznetsov, Neorhanycheskye materyaly, 32(3), 261 (1996).
[6] O. M. Matkivs'kyy, I. V. Horichok, D. M. Freyik, H. Ya. Hurhula, Physics and Chemistry of Solid State 15(3), 469 (2014).
[7] D. M. Freyik, B. S. Dzunza, V. I. Makovyshyn, I. A. Arsenyuk, O. Yu. Kal'ka, Physics and Chemistry of Solid State 15(3), 510 (2014).
[8] D. M. Freyik, B. S. Dzunza, I. I. Chav"yak, V. I. Makovyshyn, I. A. Arsenyuk, Fizychna inzheneriya poverkhni, 12(3), 405 (2014).
[9] W. Js. Ostwald, Physics Chemistry. 34, 495, (1900).
[10] Ya. P. Saliy, D. M. Freyik, I. S. Bylina, I. M. Freyik, Nanostrukturnoe materyalovedenye,12, (1), 34, (2015).
[2] D. M. Freyik, Ya. S. Yavors'kyy, I. I. Chav"yak, V. I. Makovyshyn, O. M. Matkivs'kyy, R. Ya. Yaremkiv. Napivprovidnykovi materialy, informatsiyni tekhnolohiyi ta fotovol'tayika (Kremenchuk, 2014). C. 106.
[3] R. D. Venhrenovych, B. V. Ivans'kyy, A. V. Moskalyuk. Physics and Chemistry of Solid State, 10(1). 19, (2009).
[4] M. O. Galushcak, D. M. Freik, I. M. Ivanyshyn, A. V. Lysak, M. V. Pyts, Journal of Thermoelectricity, 1, 43 (2000).
[5] V. L. Kuznetsov, Neorhanycheskye materyaly, 32(3), 261 (1996).
[6] O. M. Matkivs'kyy, I. V. Horichok, D. M. Freyik, H. Ya. Hurhula, Physics and Chemistry of Solid State 15(3), 469 (2014).
[7] D. M. Freyik, B. S. Dzunza, V. I. Makovyshyn, I. A. Arsenyuk, O. Yu. Kal'ka, Physics and Chemistry of Solid State 15(3), 510 (2014).
[8] D. M. Freyik, B. S. Dzunza, I. I. Chav"yak, V. I. Makovyshyn, I. A. Arsenyuk, Fizychna inzheneriya poverkhni, 12(3), 405 (2014).
[9] W. Js. Ostwald, Physics Chemistry. 34, 495, (1900).
[10] Ya. P. Saliy, D. M. Freyik, I. S. Bylina, I. M. Freyik, Nanostrukturnoe materyalovedenye,12, (1), 34, (2015).
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Published
2016-03-15
How to Cite
Saliy, Y., Makovyshyn, V., Bylina, I., & Bushkov, N. (2016). Habit, Symmetry and Orientation of Surface Structures Vapor - Phase Condensation SnTe:Bi on Ceramics. Physics and Chemistry of Solid State, 17(1), 65–69. https://doi.org/10.15330/pcss.17.1.65-69
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Scientific articles