Investigation of phase composition and electrical characteristics of nanocrystalline zinc oxide, doped by transition metals
DOI:
https://doi.org/10.15587/2313-8416.2017.118801Keywords:
nanostructured materials, zinc oxide nanopowder, doping, phase composition, dielectric conductivityAbstract
The prerequisites for the use of transition metals as alloying elements in the nanopowder zinc oxide synthesis are considered. The doping effect with nickel, manganese and cobalt on the sintered materials, based on nanocrystalline zinc oxide, phase composition and dielectric conductivity is studied. The research results can be used in the development of obtaining modern materials effective technologies for electrical engineering purpose with enhanced functional properties
References
Hannink, R., Hill, A. (Eds.) (2009). Nanostrukturnye materialy. Moscow: Tehnosfera, 488.
Gusev, A. I. (2009). Nanomaterialy, nanostruktury i nanotehnologii. Moscow: Fizmatlit, 416.
Maltsev, P. P. (Ed.) (2008). Nanotehnologii. Nanomaterialy. Nanosistemnaya tehnika. Moscow: Tehnosfera, 432.
Pool, Ch., Owens, F. (2010). Nanotehnologii, Moscow: Tehnosfera, 336.
Roduner, E.; Andryevskyi, R. A. (Ed.) (2010). Razmernye effekty v nanomaterialah. Moscow: Tehnosfera, 356.
Burlakov, V. S., Tarasenko, N. V., Nevar, E. A., Nedelko, M. I. (2011). Morfologiya i opticheskie svoystva nanostruktur oksida tsynka, sintezirovannyh metodami termicheskogo i elektrorazryadnogo raspyleniya. Zhurnal tehnicheskoy fiziki, 2, 89–97.
Pearton, S. J., Norton, D. P., Ip, K., Heo, Y. W., Steiner, T. (2005). Recent progress in processing and of ZnO. Progress in materials science, 50 (3), 293–340. doi: 10.1016/j.pmatsci.2004.04.001
Kamat, P. V., Patrick, B. (1992). Photophysics and photochemistry of quantized zinc oxide colloids. The Journal of Physical Chemistry, 96 (16), 6829–6834. doi: 10.1021/j100195a055
El-Shall, M. S., Gravier, D., Pernisz, U., Baraton, M. I. (1995). Synthesis and characterization of nano-scale zinc oxide particles: 1. Laser vaporization/ condensation technique. Nanostructured Materials, 6 (1-4), 297–300. doi: 10.1016/0965-9773(95)00056-9
Janotti, A., Van de Walle, C. (2009). Fundamentals of zinc oxide as a semiconductor. Reports on Progress in Physics, 72 (12), 126501. doi: 10.1088/0034-4885/72/12/126501
Lanje, A., Sharma, S., Ningthoujam, R., Ahn, J., Pode, R. (2013). Low temperature dielectric studies of zinc oxide (ZnO) nanoparticles prepared by precipitation method. Advanced Powder Technology, 24 (1), 331–335. doi: 10.1016/j.apt.2012.08.005
Vnukov, A. A., Belov, I. B., Omelchuk, A. R., Baskevich, A. S., Yakovlev-Barskiy, D. V. (2012). Izuchenie osobennostey polucheniya i issledovanie svoystv nanokristallicheskogo oksida tsynka. Noviny nauki Prydniprovya, 6, 7–13.
Pinchuk, S. I., Vnukov, A. A., Belov, I. B., Baskevich, A. S., Lyashkov, A. Yu., Omelchuk, A. R. (2013). Dielektricheskaya pronitsaemost oksidov tsynka, sintezirovannyh metodom zhidkofaznogo himicheskogo osazhdeniya. Metaloznavstvo ta termichna obrobka metaliv, 4, 48–53.
Pinchuk, S. I., Vnukov, A. A., Belov, I. B., Baskevich, A. S., Lyashkov, A. Yu., Omelchuk, A. R. (2014). Vliyanie tehnologicheskih parametrov osazhdeniya na svoystva nanokristallicheskogo oksida tsynka. Metallurgicheskaya i gornorudnaya promyshlennost, 1, 63–65.
Gorelik, S. S., Skakov, Yu. A., Rastorguev, L. N. (1994). Rentgenograficheskiy i elektronno-opticheskiy analiz. Moscow: MISIS, 328.
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Copyright (c) 2017 Olexandr Vnukov, Artem Golovachov, Olena Bila
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