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Piezomagnetic materials in composition Ni_{0.284}Zn_{0.549}Cu_{0.183}Fe_{1.984}O₄ were prepared by mixed oxide method at 1100°C. Powder X-ray diffraction studies confirm the crystalline nature of the synthesized Ni_{0.284}Zn_{0.549}Cu_{0.183}Fe_{1.984}O₄ piezomagnetic material. The crystallite size is calculated to be 19.332 μ m using the Debye-Scherrer formula. The surface morphology and particle size of the samples has been studied by scanning electron microscopy. The thermal stability and decomposition behaviour of Ni_{0.284}Zn_{0.549}Cu_{0.183}Fe_{1.984}O₄ piezomagnetic material have been studied by thermogravimetric analysis at a heating rate of 15°C/min. The effective activation energy of the prepared composite was calculated using single heating rate methods: Broido's and Coats-Redfern methods. Dielectric properties of Ni_{0.284}Zn_{0.549}Cu_{0.183}Fe_{1.984}O₄ piezomagnetic material have been studied in a wide range of frequencies and temperatures. The magnetic behavior of Ni_{0.284} Zn_{0.549} Cu_{0.183} Fe_{1.984}O₄ piezomagnetic material at room temperature has been confirmed by vibrational sample magnetometer studies.
[7] Quanlu Li, Yuan Li, Zhaohui Huang, 'Multifunctional Piezomagnetic Ferrite Materials and Their Newly Acoustical and Vibration Control Devices', PIERS Proc., Hangzhou, China 2008
[8] Quanlu Li, Yuan Li, Zhaohui Huang, in: Progress in Electromagnetics Research Symp., Beijing (China), 2009
[10] Qun Guan, Commun. Control Sci. Eng. 1, 1 (2013)
[11] T. He, Q. Huang, A.P. Ramirez, Y. Wang, K.A. Regan, N. Rogado, M.A. Hayward, M.K. Haas, J.S. Slusky, K. Inumara, H.W. Zandbergen, N.P. Ong, R.J. Cava, Nature (London) 411, 54 (2001), doi: 10.1038/35075014
[12] K. Kamishima, T. Goto, H. Nakagawa, N. Miura, M. Ohashi, N. Mori, T. Sasaki, T. Kanomata, Phys. Rev. B 63, 024426 (2000), doi: 10.1103/PhysRevB.63.024426
[13] P. Lukashev, F.R. Sabirianov, K. Belashchenko, Phys. Rev. B 78, 184414 (2008), doi: 10.1103/PhysRevB.78.184414
[14] Y. Shen, J. Gao, Y. Wang, P. Finkel, J. Li, D. Viehland, Appl. Phys. Lett. 102, 172904 (2013), doi: 10.1063/1.4803660
[15] S. Balu, G.R. Kannan, K. Rajalingam, Int. J. Eng. Sci. Res. Technol. 3, 678 (2014) http://ijesrt.com/issues%20pdf%20file/Archives-2014/February-2014/26.pdf
[16] D.A. Hadjiloizi, A.V. Georgiades, A.L. Kalamkarov, S. Jothi, Europ. J. Mech. A/Solids 39, 298 (2013), doi: 10.1016/j.euromechsol.2012.11.003