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Information Seminar Paper

Title

HYDROTHERMAL SYNTHESIS OF FE-MN MAGNETIC NANOPARTICLES SUPPORTED BY AL2O3 AND STUDY THE EFFECT OF CALCINATION CONDITIONS

Author(s)

ZARE AHAD | Poop Etrat

Pages

  -

Abstract

 THE PURPOSE OF THIS STUDY WAS TO EXPLORE THE IMPACTS OF DIFFERENT CALCINATION CONDITIONS AS A PARAMETER ON THE STRUCTURES OF IRON-MANGANESE OXIDE NANOPARTICLES, WHICH BASED ON AL2O3 BY USING HYDROTHERMAL METHOD. IN PRESENT RESEARCH DIFFERENT TERMS OF TIMES AND HIGH TEMPERATURES OF CALCINATION USED TO PREPARE THE PARTICLES. THE SYNTHESIZED NANO-SCALE POWDER INVESTIGATED BY FIELD-EMISSION SCANNING ELECTRON MICROSCOPE (FESEM), X-RAY DIFFRACTION (XRD) AND ENERGY DEPRESSIVE X-RAY (EDX OR EDS). THE OBSERVATION SHOWED THE EXISTENCE OF VARIOUS COMPOUND IN SAMPLES SUCH AS FE2O3, FE3O4, MNFE2O4, MN2O3, MN3O4 AND THE CRYSTALS SIZE WAS RANGE BETWEEN 20-30 NANOMETERS WITH SPHERICAL MORPHOLOGY. SUBSEQUENTLY THE RESULTS OF SURVEYS SHOWED THAT THE SUITABLE TIME AND TEMPERATURE OF CALCINATION PROCESS TO OBTAIN THE BEST STRUCTURES OF FE-MN MAGNETIC NANOPARTICLES IN THIS RESEARCH WAS IN 1 HOUR AND 700OC.

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  • Cite

    APA: Copy

    ZARE, AHAD, & Poop, Etrat. (2016). HYDROTHERMAL SYNTHESIS OF FE-MN MAGNETIC NANOPARTICLES SUPPORTED BY AL2O3 AND STUDY THE EFFECT OF CALCINATION CONDITIONS. INTERNATIONAL CONFERENCE ON INNOVATION IN SCIENCE AND TECHNOLOGY. SID. https://sid.ir/paper/938911/en

    Vancouver: Copy

    ZARE AHAD, Poop Etrat. HYDROTHERMAL SYNTHESIS OF FE-MN MAGNETIC NANOPARTICLES SUPPORTED BY AL2O3 AND STUDY THE EFFECT OF CALCINATION CONDITIONS. 2016. Available from: https://sid.ir/paper/938911/en

    IEEE: Copy

    AHAD ZARE, and Etrat Poop, “HYDROTHERMAL SYNTHESIS OF FE-MN MAGNETIC NANOPARTICLES SUPPORTED BY AL2O3 AND STUDY THE EFFECT OF CALCINATION CONDITIONS,” presented at the INTERNATIONAL CONFERENCE ON INNOVATION IN SCIENCE AND TECHNOLOGY. 2016, [Online]. Available: https://sid.ir/paper/938911/en

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