
S-ichi O, Namai A, Yoshikiyo M, Imoto K, Tamazaki K, Matsuno K, Inoue O, Ide T, Masada K, Goto M, Goto T, Yoshida T, Miyazaki T (2016) Multimetal-substituted epsilon-iron oxide ϵ-Ga0.31Ti0.05Co0.05Fe1.59O3 for next-generation magnetic recording tape in the big-data era. Galloway JM, Talbot JE, Critchley K, Miles J, Bramble J (2015) Developing biotemplated data storage: room temperature biomineralization of L10CoPt magnetic nanoparticles. Niemirowicz K, Markiewicz KH, Wilczewska AZ, Car H (2012) Magnetic nanoparticles as new diagnostic tools in medicine. Issa B, Obaidat I, Albiss B, Haik Y (2013) Magnetic nanoparticles: surface effects and properties related to biomedicine applications. Jeseentharani V, George M, Jeyaraj B, Dayalan A, Nagaraja K (2013) Synthesis of metal ferrite (MFe 2O 4, M = Co, Cu, Mg, Ni, Zn) nanoparticles as humidity sensor materials. You J, Chen X, Zheng B, Geng X, Zhang C (2017) Suspension plasma-sprayed ZnFe 2O 4 nanostructured coatings for ppm-level acetone detection. Prasad BBVSV, Ramesh KV, Srinivas A (2019) Structural and magnetic studies on Co-Zn nanoferrite synthesized via sol-gel and combustion methods. Sadri F, Ramazani A, Ahankar H, Taghavi Fardood S, Azimzadeh Asiabi P, Khoobi M, Joo SW, Dayyani N (2016) Aqueous- phase oxidation of alcohols with green oxidants (Oxone and hydrogen peroxide) in the presence of MgFe 2O 4 magnetic nanoparticles as an efficient and reusable catalyst. Kooti M, Sedeh AN (2013) Synthesis and characterization of NiFe 2O 4 magnetic nanoparticles by combustion method. From the resistivity measurement using the four-probe method the activation energies of the ZnFe 2O 4 and lanthanum-doped ZnFe 2O 4were calculated. The DC conductivity study showed the semiconductor behavior of the ZnFe 2O 4 and lanthanum-doped ZnFe 2O 4. The resistivity measurement was carried out in the temperature range of 318–453 K. The DC conductivity study was performed using the four-probe method. The structural analysis revealed the normal spinel structure of the ZnFe 2O 4 and lanthanum-doped ZnFe 2O 4.
Fityk peak analysis software#
The Fityk software was used for the estimation of the crystallite size of the synthesized nanoferrites. The Expo-2014 software was used for indexing and structural analysis of the nanoferrites. The formation of ZnFe 2O 4 and lanthanum-doped ZnFe 2O 4 nanoferrites was confirmed by X-ray Diffraction (XRD) and Fourier Transform Infrared Spectroscopy (FTIR) techniques.

This paper presents the synthesis, structural analysis, and DC conductivity of zinc ferrite (ZnFe 2O 4) and lanthanum-doped zinc nanoferrite synthesized via green synthesis route.
