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Abstrakty
Two series of Mn-Zn nanoferrites (namely Mn1-xZnxFe2O4 and Mn1-xZnxFe2-yRyO4) were synthesized using standard ceramic technique. X-ray diffraction and FT-IR were employed in the chacterization of the nanopowder. The X-ray density for each sample increased after laser irradiation which was correlated with the decrease in the unit cell volume. The study involved the thermal and frequency variation of the dielectric constant and AC conductivity of the investigated samples before and after laser irradiation. The later altered the conductivity by decreasing its value for the rare earth doped samples except for the Sm3+ doped one. The results suggested the exploitation of Mn-Zn doped rare earth nanoferrites in many technological applications demanding high resistivity.
Wydawca
Czasopismo
Rocznik
Tom
Strony
519--527
Opis fizyczny
Bibliogr. 31 poz., rys., tab.
Twórcy
autor
- Materials Science and Nanotechnology Department, Faculty of Post graduate studies for Advanced Sciences, (PSAS), Beni-Suef University, Beni-Suef, Egypt
autor
- Materials Science lab (1), Physics Department, Faculty of Science, Cairo University, Giza, Egypt
autor
- National Institute for Standard (NIS), Giza, Egypt
autor
- Materials Science lab (1), Physics Department, Faculty of Science, Cairo University, Giza, Egypt
Bibliografia
- [1] GHAZANFAR U., SIDDIQI S.A., ABBAS G., Mater. Sci. Eng. B-Adv., 118 (2005), 84.
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- [6] DAS P.S., SINGH G.P., J. Magn. Magn. Mater., 401 (2016), 918.
- [7] AHMED M.A., EL-KHAWAS E.H., RADWAN F.A., J. Mater. Sci., 36 (2001), 1.
- [8] AHMED M.A., AZAB A.A., EL-KHAWAS E.H., Synth. React. Inorg. M., 46, 3 (2016), 376.
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- [16] MASTAI Y., Advances in Crystallization Processes, In-Tech, 2012.
- [17] AHMED M.A., ATEIA E., EL-DEK S.I., Mater. Lett., 57 (2003), 4256.
- [18] AHMED M.A., ATEIA E., EL-DEK S.I., Vib. Spectrosc., 30 (2002), 69.
- [19] AHMED M.A., EL-DEK S.I., MANSOUR S.F., OKASHA N., Solid. State. Sci., 13 (2011), 1180.
- [20] MAHESHKUMAR L.M., VINOD N.D., SUNDAR R., RANGANATHAN K., OAK S.M., SHENGULE D.R., Appl. Surf. Sci., 257 (20) (2011), 8511.
- [21] VALENZUELA R., Magnetic Ceramics, Cambridge University Press, Cambridge, 1994.
- [22] GOLDMAN A., Modern Ferrite Technology, 2nd Ed., Springer, Pittsburgh, 2006.
- [23] AHMED M.A., OKASHA N., EL-DEK S.I., Nanotechnology, 19 (6) (2008), 065603.
- [24] VENKATARAJU C., PAULSINGH R., J. Nanosci., 2014, (2014).
- [25] MISRA N.K., SATI R., CHOWDHARY R.N.P., Mater. Lett., 24 (5) (1995), 313.
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Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-992f7991-c874-4a90-b1b5-d89b6ff25274