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Fityk peak analysis
Fityk peak analysis







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.

fityk peak analysis

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.







Fityk peak analysis