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Ilmārs Zālīte, Gundega Heidemane, Aija Krūmiņa, Dzintra Rašmane and Mikhail Maiorov

R eferences [1]A. C. F. M. Costa, E. Tortella, M. R. Morelli, and R. H. G. A. Kiminami, “Synthesis, microstructure and magnetic properties of Ni–Zn ferrites,” Journal of Magnetism and Magnetic Materials , vol. 256, no. 1–3, pp. 174–182, Jan. 2003. [2]P. Priyadharsini, A. Pradeep, and G. Chandrasekaran, “Novel combustion route of synthesis and characterization of nanocrystalline mixed ferrites of Ni–Zn,” Journal of Magnetism and Magnetic Materials , vol. 321, no. 12, pp. 1898–1903, Jun. 2009. https

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Palusamy Suppuraj, Ganesamoorthy Thirunarayanan, Meenakshisundaram Swaminathan and Inbasekaran Muthuvel

.partic.2016.06.003 [20] X. Li, Y. Hou, Q. Zhao, and L. Wang, “A general, one-step and template-free synthesis of sphere-like zinc ferrite nanostructures with enhanced photocatalytic activity for dye degradation,” Journal of Colloid and Interface Science , vol. 358, no. 1, pp. 102–108, Jun. 2011. [21] R. K. Selvan, C. O Augustin, L. J. Berchmans, and R. Saraswathi, “Combustion synthesis of CuFe 2 O 4 ,” Materials Research Bulletin , vol. 38, no. 1, pp. 41–54, Jan. 2003.

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Santhanam John Joseph, Kaliyaperumal Ranganathan, Ramamoorthy Suresh, Ranganathan Arulkumaran, Rajasekaran Sundararajan, Dakshnamoorthy Kamalakkannan, Sakthivel Pazhanivel Sakthinathan, Ganesan Vanangamudi, Selvakumar Dineshkumar, Kannan Thirumurthy, Inabasekaran Muthuvel, Ganesamoorthy Thirunarayanan and Kunasekaran Viveksarathi

nanoparticles by solution-combustion method for the photocatalytic degradation of organic dye,” Journal of Nanostructure in Chemistry , vol. 3, no. 1, p. 36, 2013. [32] S. Atghia and S. Beigbaghlou, “Nanocrystalline titania-based sulfonic acid (TiO 2 -Pr-SO 3 H) as a new, highly efficient, and recyclable solid acid catalyst for preparation of quinoxaline derivatives,” Journal of Nanostructure in Chemistry , vol. 3, no. 1, p. 38, 2013. [33] F. Sadeghi, F. Khani, A. Azandaryani, Y