Properties and Practical Application of Nanoporous Silicate Matrices, Filled with Mixture of NaNO2 and BaTiO3 Ferroelectrics. influence of Co-Encapsulation
DOI:
https://doi.org/10.15330/pcss.17.4.465-470Keywords:
MCM-41 nanoporous matrix, , ferroelectric, impedance, Nyquist diagram, dielectric constan, electric loss tangen, thermoinduced depolarizationAbstract
Results of research the characteristics of MCM-41 porous silica matrix, encapsulated into her pores by sodium nitrite and its mix with barium titanate were presented. Nature of changes the impedance frequency dispersion, electric loss tangent and dielectric permittivity of intercalates, synthesized under heating, lighting and magnetic field were identified. The conditions, under which the synthesized nanohibrydes can be interesting in terms of formation the structures of electric energy quantum battery and capacitive apexes for reading information from magnetic media, were found.
References
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[9] G. H. Panova, A. A. Nikonov, A. A. Naberezhnov, A. V. Fokin, FTT 51(11), 2098 (2009).
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[13] Guo Xuefeng , Lai Min , Kong Yan , Ding Weiping , Yan Qijie and C.T. Langmuir, 20(7), 2879 (2004).
[14] T. M. Bіshhanjuk, І. І. Grigorchak, F. O. Іvashhishin, D. V. Matulka, S. І. Budzuljak, L. S. Jablon', Fіzika і hіmіja tverdogo tіla 15(3), 653 (2014).
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Published
2016-12-15
How to Cite
Grygorchak, I., Budzulyak, I., Ivashchyshyn, F., & Shvets, R. (2016). Properties and Practical Application of Nanoporous Silicate Matrices, Filled with Mixture of NaNO2 and BaTiO3 Ferroelectrics. influence of Co-Encapsulation. Physics and Chemistry of Solid State, 17(4), 465–470. https://doi.org/10.15330/pcss.17.4.465-470
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Scientific articles