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Title

STUDY OF FABRICATION AND THE EFFECT OF MN SUBSTITUTION ON STRUCTURAL AND MAGNETIC PROPERTIES OF MNXFE0.7-XZN0.3FE2O4 NANOPARTICLES

Pages

  159-166

Abstract

 In this researcher, the MnxFe0.7-xZn0.3Fe2O4 ferrite nanoparticles prepared by coprecipitation method. In these compositions the value of x varies from 0 to 0.7. Structural and magnetic properties of synthesized powder were characterized by Xray diffraction (XRD), FarInfrared spectroscopy (Far-FTIR), Transmission Electron Microscopy (TEM) and VIBRATION SAMPLE MAGNETOMETER (VSM). The XRD results show that all of the samples have single phase spinel structure. The average crystallite size estimated of about 12 to 7 nm, using Scherrer's formula. The Far-FTIR measurements show, two frequency bonds within the rang 300 to 600 cm-1 indicate the presence of cationanion interactions in the octahedral and tetrahedral sites, respectively. Also Transmission Electron Microscope images show particles size uniform distribution. The VSM results show that the saturation magnetization for all the samples decrease by increasing the manganese content.

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    APA: Copy

    BARANIFAR, R., & NIYAIFAR, M.. (2016). STUDY OF FABRICATION AND THE EFFECT OF MN SUBSTITUTION ON STRUCTURAL AND MAGNETIC PROPERTIES OF MNXFE0.7-XZN0.3FE2O4 NANOPARTICLES. NANOSCALE, 3(3), 159-166. SID. https://sid.ir/paper/257071/en

    Vancouver: Copy

    BARANIFAR R., NIYAIFAR M.. STUDY OF FABRICATION AND THE EFFECT OF MN SUBSTITUTION ON STRUCTURAL AND MAGNETIC PROPERTIES OF MNXFE0.7-XZN0.3FE2O4 NANOPARTICLES. NANOSCALE[Internet]. 2016;3(3):159-166. Available from: https://sid.ir/paper/257071/en

    IEEE: Copy

    R. BARANIFAR, and M. NIYAIFAR, “STUDY OF FABRICATION AND THE EFFECT OF MN SUBSTITUTION ON STRUCTURAL AND MAGNETIC PROPERTIES OF MNXFE0.7-XZN0.3FE2O4 NANOPARTICLES,” NANOSCALE, vol. 3, no. 3, pp. 159–166, 2016, [Online]. Available: https://sid.ir/paper/257071/en

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